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336 changed files with 37816 additions and 12308 deletions
1
.gitattributes
vendored
Normal file
1
.gitattributes
vendored
Normal file
|
|
@ -0,0 +1 @@
|
|||
llvm/_version.py export-subst
|
||||
8
.gitignore
vendored
Normal file
8
.gitignore
vendored
Normal file
|
|
@ -0,0 +1,8 @@
|
|||
*~
|
||||
build
|
||||
_build
|
||||
*.pyc
|
||||
*.so
|
||||
/llvm/_intrinsic_ids.py
|
||||
llvm_
|
||||
newbinding/api/*
|
||||
24
.travis.yml
Normal file
24
.travis.yml
Normal file
|
|
@ -0,0 +1,24 @@
|
|||
language: python
|
||||
|
||||
python:
|
||||
- "2.6"
|
||||
- "2.7"
|
||||
- "3.2"
|
||||
- "3.3"
|
||||
|
||||
branches:
|
||||
only:
|
||||
- master
|
||||
|
||||
install:
|
||||
- wget "http://repo.continuum.io/pkgs/free/linux-64/llvm-3.2-0.tar.bz2"
|
||||
- tar -xjf llvm-3.2-0.tar.bz2
|
||||
- PATH+=":`pwd`/bin"
|
||||
- export LD_LIBRARY_PATH="`pwd`/lib"
|
||||
- export LLVM_CONFIG_PATH="`pwd`/bin/llvm-config"
|
||||
- $LLVM_CONFIG_PATH --cflags # test llvm-config
|
||||
- export LLVMPY_DYNLINK=1
|
||||
- python setup.py install -q
|
||||
|
||||
script: cd ~; python -c "import sys;import llvm;sys.exit(0 if llvm.test() == 0 else 1)"
|
||||
|
||||
107
CHANGELOG
107
CHANGELOG
|
|
@ -1,14 +1,88 @@
|
|||
2014-04-28 0.12.5:
|
||||
---------------------
|
||||
* Fixes memory leaks (#92)
|
||||
* Fixes tarball (#99)
|
||||
|
||||
0.7, in progress:
|
||||
2014-03-20 0.12.4:
|
||||
---------------------
|
||||
* Add dylib_import_library and friends
|
||||
* Fix BasicBlock downcast
|
||||
* Module hashing
|
||||
* Fix test script
|
||||
|
||||
2014-02-18 0.12.3:
|
||||
---------------------
|
||||
* Fix deprecation message for py2.6
|
||||
* Fix llvm_cbuilder for using deprecated_alloca
|
||||
* Merged PR #88 by cantora
|
||||
* Merged PR #94 by cgohlke
|
||||
|
||||
2014-02-04 0.12.2:
|
||||
---------------------
|
||||
* enhance wrapper efficiency by moving some capsule code into C++
|
||||
* fix unclosed file handler in avx_support
|
||||
* multiple-dimension insert_value, extract_value
|
||||
* various minor fixes
|
||||
|
||||
2013-11-11 0.12.1:
|
||||
---------------------
|
||||
* various bug fixes
|
||||
|
||||
2013-08-28 0.12.0:
|
||||
---------------------
|
||||
* update to LLVM 3.3 and maintain compatibility with LLVM 3.2
|
||||
* add LLRT for minimal support for 64-bit divmod on 32-bit platform
|
||||
* start to adopt MCJIT (not quite usable on win32)
|
||||
* various bug fixes
|
||||
|
||||
2013-03-05 0.11.1:
|
||||
--------------------
|
||||
* fix test when cc is not available
|
||||
* fix Python 3 division (Hernan Grecco) (Issue #59)
|
||||
* add relocation enums and add reloc argument for TargetMachine
|
||||
|
||||
|
||||
2013-03-01 0.11.0:
|
||||
--------------------
|
||||
* fix Python 3 support on Windows
|
||||
* New llvm binding
|
||||
|
||||
|
||||
2013-02-01 0.10.2:
|
||||
--------------------
|
||||
* change default to link dynamically to LLVM use:
|
||||
$ export LLVMPY_DYNLINK=0 # link statically
|
||||
$ export LLVMPY_DYNLINK=1 # link dynamically
|
||||
$ unset LLVMPY_DYNLINK # tries to link dynamically if LLVM shared
|
||||
# objects are found and statically otherwise
|
||||
* fix llpython for Python 2.6 support
|
||||
|
||||
|
||||
2013-01-25 0.10.1:
|
||||
--------------------
|
||||
* fix support for Python 2.6
|
||||
|
||||
|
||||
2013-01-18 0.10.0:
|
||||
--------------------
|
||||
* Add LLVM 3.2 support.
|
||||
* New TargetData class.
|
||||
* Fixed windows issue (Issue #42).
|
||||
* Add ExecutionEngine.add_global_mapping and .get_pointer_to_global.
|
||||
* Improved TargetMachine class and added code-model constants (CM_*).
|
||||
* Added llvm.passes.build_pass_managers as a simpler way to build PassManagers.
|
||||
|
||||
|
||||
in progress, 0.7:
|
||||
-----------------
|
||||
* Add llvm.core.Argument.alignment property.
|
||||
* Migrate to LLVM 2.8.
|
||||
* Fix ffi link issue on darwin (Albert Mietus) (Issue #29).
|
||||
* LLVM tutorial ported (Max Shawabkeh) (Issue #33).
|
||||
|
||||
|
||||
0.6, 31-Aug-2010:
|
||||
|
||||
2010-08-31 0.6:
|
||||
-----------------
|
||||
* Add and remove function attributes (Krzysztof Goj) (Issue #21).
|
||||
* Wrap fadd,fsub,fmul (Aaron S Lav) (Issue #31).
|
||||
* Migrate to LLVM 2.7.
|
||||
|
|
@ -27,16 +101,16 @@
|
|||
* Migrate to LLVM 2.5.
|
||||
|
||||
|
||||
0.5, 22-Nov-2008:
|
||||
|
||||
2008-11-22 0.5:
|
||||
-----------------
|
||||
* Added vicmp, vfcmp instructions and constant expressions.
|
||||
* Builds on FreeBSD.
|
||||
* Updated documentation.
|
||||
* Migrate to LLVM 2.4.
|
||||
|
||||
|
||||
0.4, 21-Nov-2008:
|
||||
|
||||
2008-11-21 0.4:
|
||||
-----------------
|
||||
* Code cleanup, added license headers.
|
||||
* Added llvm.core.load_library_permanently() (Issue #12).
|
||||
* Fix comparison using != (Issue #11).
|
||||
|
|
@ -45,8 +119,8 @@
|
|||
* Added viewCFG methods to Function (Paulo Silva).
|
||||
|
||||
|
||||
0.3, 8-Sep-2008:
|
||||
|
||||
2008-09-08 0.3:
|
||||
-----------------
|
||||
* Passes added.
|
||||
* Assembly support: create modules from .ll files.
|
||||
* Various bug fixes.
|
||||
|
|
@ -58,13 +132,13 @@
|
|||
* Updated documentation.
|
||||
|
||||
|
||||
0.2.1, 18-Jun-2008:
|
||||
|
||||
2008-06-28 0.2.1:
|
||||
-------------------
|
||||
* Build cleanly with LLVM 2.3 and 2.3svn.
|
||||
|
||||
|
||||
0.2, 15-Jun-2008:
|
||||
|
||||
2008-06-15 0.2:
|
||||
-----------------
|
||||
* Independent package, need not be unpacked into llvm/bindings.
|
||||
* Fixed ownership issues with Module/ModuleProvider.
|
||||
* Modules, values and types can be stringified, to get their LLVM
|
||||
|
|
@ -79,7 +153,6 @@
|
|||
* Lots of cleanup.
|
||||
|
||||
|
||||
0.1, 10-May-2008:
|
||||
|
||||
* Initial release.
|
||||
|
||||
2008-05-10 0.1:
|
||||
-----------------
|
||||
* Initial release
|
||||
|
|
|
|||
1
LICENSE
1
LICENSE
|
|
@ -1,4 +1,5 @@
|
|||
Copyright (c) 2008-10, Mahadevan R All rights reserved.
|
||||
Copyright (c) 2012, Continuum Analytics, Inc. All rights reserved.
|
||||
|
||||
Redistribution and use in source and binary forms, with or without
|
||||
modification, are permitted provided that the following conditions are met:
|
||||
|
|
|
|||
|
|
@ -1,4 +1,6 @@
|
|||
include CHANGELOG LICENSE README setup.py MANIFEST.in
|
||||
include CHANGELOG LICENSE README.rst setup.py MANIFEST.in versioneer.py
|
||||
recursive-include llvm *
|
||||
recursive-include llvmpy *
|
||||
recursive-include www *
|
||||
recursive-include test *
|
||||
recursive-include tools *
|
||||
|
|
|
|||
24
README.md
24
README.md
|
|
@ -1,24 +0,0 @@
|
|||
# llvm-py: Python Bindings for LLVM #
|
||||
llvm-py provides Python bindings for LLVM.
|
||||
|
||||
## Home page ##
|
||||
https://github.com/AndrewBC/llvm-py
|
||||
|
||||
## Versions ##
|
||||
This package has only been tested with LLVM 2.9, and Python 2.7, (not Python 3.x).
|
||||
|
||||
## Quickstart ##
|
||||
1. Get 2.9 version of LLVM, build it. Make sure '--enable-pic' is passed to LLVM's 'configure'.
|
||||
2. Get llvm-py and install it:
|
||||
|
||||
```
|
||||
$ git clone git@github.com:AndrewBC/llvm-py.git
|
||||
$ cd llvm-py
|
||||
$ python setup.py install
|
||||
```
|
||||
|
||||
3. See documentation at 'www/web/index.html' and examples under 'test'.
|
||||
|
||||
## LICENSE ##
|
||||
llvm-py is distributed under the new BSD license, which is similar to the LLVM license itself.
|
||||
See the file called LICENSE for the full license text.
|
||||
67
README.rst
Normal file
67
README.rst
Normal file
|
|
@ -0,0 +1,67 @@
|
|||
================================
|
||||
llvmpy: Python bindings for LLVM
|
||||
================================
|
||||
|
||||
Home page
|
||||
---------
|
||||
|
||||
http://www.llvmpy.org
|
||||
|
||||
Versions
|
||||
--------
|
||||
|
||||
This package has been tested with LLVM 3.2, Python 2.6, 2.7 and 3.3.
|
||||
Other Python versions may work.
|
||||
|
||||
Quickstart
|
||||
----------
|
||||
|
||||
1. Get and extract LLVM 3.2 source tarball from
|
||||
`llvm.org <http://llvm.org/releases/download.html#3.2>`_. Then, ``cd`` into
|
||||
the extracted directory.
|
||||
|
||||
2. Run ``./configure --enable-optimized --prefix=LLVM_INSTALL_PATH``.
|
||||
|
||||
**Note**: Without the ``--enable-optimized`` flag, debug build will be
|
||||
selected. Unless you are developing LLVM or llvmpy, it is recommended
|
||||
that the flag is used to reduce build time and binary size.
|
||||
|
||||
**Note**: Use prefix to select the installation path. It is recommended
|
||||
to separate your custom build from the default system package. Please
|
||||
replace ``LLVM_INSTALL_PATH`` with your own path.
|
||||
|
||||
3. Run ``REQUIRES_RTTI=1 make install`` to build and install.
|
||||
|
||||
**Note**: With LLVM 3.2, the default build configuration has C++ RTTI
|
||||
disabled. However, llvmpy requires RTTI.
|
||||
|
||||
**Note**: Use ``make -j2 install`` to enable concurrent build.
|
||||
Replace ``2`` with the actual number of processor you have.
|
||||
|
||||
4. Get llvm-py and install it::
|
||||
|
||||
$ git clone git@github.com:llvmpy/llvmpy.git
|
||||
$ cd llvmpy
|
||||
$ LLVM_CONFIG_PATH=LLVM_INSTALL_PATH/bin/llvm-config python setup.py install
|
||||
|
||||
Run the tests::
|
||||
|
||||
$ python -c "import llvm; llvm.test()"
|
||||
|
||||
5. See documentation at 'http://www.llvmpy.org' and examples
|
||||
under 'test'.
|
||||
|
||||
Common Build Problems
|
||||
---------------------
|
||||
|
||||
1. If llvmpy cannot be imported due to "undefined symbol:
|
||||
_ZTIN4llvm24PassRegistrationListenerE", it is because RTTI is not enabled
|
||||
when building LLVM. "_ZTIN4llvm24PassRegistrationListenerE" is the typeinfo
|
||||
of PassRegistrationListener class.
|
||||
|
||||
LICENSE
|
||||
-------
|
||||
|
||||
llvmpy is distributed under the new BSD license, which is similar to the LLVM
|
||||
license itself.
|
||||
See the file called LICENSE for the full license text.
|
||||
144
README_LLVM_CBUILDER.md
Normal file
144
README_LLVM_CBUILDER.md
Normal file
|
|
@ -0,0 +1,144 @@
|
|||
LLVM CBuilder
|
||||
=============
|
||||
|
||||
A few short examples:
|
||||
(TODO: add more later)
|
||||
|
||||
```python
|
||||
from llvm.core import *
|
||||
from llvm_cbuilder import *
|
||||
import llvm_cbuilder.shortnames as C
|
||||
```
|
||||
|
||||
```python
|
||||
class Square(CDefinition):
|
||||
_name_ = 'square'
|
||||
_retty_ = C.double
|
||||
_argtys_ = [ ('x', C.double) ]
|
||||
|
||||
def body(self, x):
|
||||
y = x * x
|
||||
self.ret(y)
|
||||
```
|
||||
|
||||
```python
|
||||
m = Module.new('my_module')
|
||||
llvm_square = Square()(m)
|
||||
print(m)
|
||||
```
|
||||
|
||||
```
|
||||
; ModuleID = 'my_module'
|
||||
|
||||
define double @square(double %x) {
|
||||
decl:
|
||||
%0 = fmul double %x, %x
|
||||
ret double %0
|
||||
}
|
||||
```
|
||||
|
||||
|
||||
```python
|
||||
class IsPrime(CDefinition):
|
||||
_name_ = 'isprime'
|
||||
_retty_ = C.int
|
||||
_argtys_ = [('x', C.int)]
|
||||
|
||||
def body(self, x):
|
||||
false = zero = self.constant(C.int, 0)
|
||||
true = one = self.constant(C.int, 1)
|
||||
|
||||
two = self.constant(C.int, 2)
|
||||
|
||||
with self.ifelse( x <= two ) as ifelse:
|
||||
with ifelse.then():
|
||||
self.ret(true)
|
||||
|
||||
with self.ifelse( (x % two) == zero ) as ifelse:
|
||||
with ifelse.then():
|
||||
self.ret(false)
|
||||
|
||||
idx = self.var(C.int, 3, name='idx')
|
||||
|
||||
with self.loop() as loop:
|
||||
with loop.condition() as setcond:
|
||||
setcond( idx < x )
|
||||
|
||||
with loop.body():
|
||||
with self.ifelse( (x % idx ) == zero ) as ifelse:
|
||||
with ifelse.then():
|
||||
self.ret(false)
|
||||
idx += two
|
||||
|
||||
self.ret(true)
|
||||
```
|
||||
|
||||
|
||||
|
||||
```
|
||||
define i32 @isprime(i32 %x) {
|
||||
decl:
|
||||
%0 = icmp sle i32 %x, 2
|
||||
br i1 %0, label %if.then, label %if.end
|
||||
|
||||
if.then: ; preds = %loop.body, %loop.cond, %if.end, %decl
|
||||
%merge = phi i32 [ 1, %decl ], [ 0, %if.end ], [ 1, %loop.cond ], [ 0, %loop.body ]
|
||||
ret i32 %merge
|
||||
|
||||
if.end: ; preds = %decl
|
||||
%1 = srem i32 %x, 2
|
||||
%2 = icmp eq i32 %1, 0
|
||||
br i1 %2, label %if.then, label %if.end4
|
||||
|
||||
if.end4: ; preds = %if.end
|
||||
br label %loop.cond
|
||||
|
||||
loop.cond: ; preds = %if.end7, %if.end4
|
||||
%idx.0 = phi i32 [ 3, %if.end4 ], [ %6, %if.end7 ]
|
||||
%3 = icmp slt i32 %idx.0, %x
|
||||
br i1 %3, label %loop.body, label %if.then
|
||||
|
||||
loop.body: ; preds = %loop.cond
|
||||
%4 = srem i32 %x, %idx.0
|
||||
%5 = icmp eq i32 %4, 0
|
||||
br i1 %5, label %if.then, label %if.end7
|
||||
|
||||
if.end7: ; preds = %loop.body
|
||||
%6 = add i32 %idx.0, 2
|
||||
br label %loop.cond
|
||||
}
|
||||
|
||||
; ModuleID = 'my_module'
|
||||
|
||||
define i32 @isprime(i32 %x) {
|
||||
decl:
|
||||
%0 = icmp sle i32 %x, 2
|
||||
br i1 %0, label %if.then, label %if.end
|
||||
|
||||
if.then: ; preds = %loop.body, %loop.cond, %if.end, %decl
|
||||
%merge = phi i32 [ 1, %decl ], [ 0, %if.end ], [ 1, %loop.cond ], [ 0, %loop.body ]
|
||||
ret i32 %merge
|
||||
|
||||
if.end: ; preds = %decl
|
||||
%1 = srem i32 %x, 2
|
||||
%2 = icmp eq i32 %1, 0
|
||||
br i1 %2, label %if.then, label %if.end4
|
||||
|
||||
if.end4: ; preds = %if.end
|
||||
br label %loop.cond
|
||||
|
||||
loop.cond: ; preds = %if.end7, %if.end4
|
||||
%idx.0 = phi i32 [ 3, %if.end4 ], [ %6, %if.end7 ]
|
||||
%3 = icmp slt i32 %idx.0, %x
|
||||
br i1 %3, label %loop.body, label %if.then
|
||||
|
||||
loop.body: ; preds = %loop.cond
|
||||
%4 = srem i32 %x, %idx.0
|
||||
%5 = icmp eq i32 %4, 0
|
||||
br i1 %5, label %if.then, label %if.end7
|
||||
|
||||
if.end7: ; preds = %loop.body
|
||||
%6 = add i32 %idx.0, 2
|
||||
br label %loop.cond
|
||||
}
|
||||
```
|
||||
6
buildscripts/condarecipe/bld.bat
Normal file
6
buildscripts/condarecipe/bld.bat
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
set LLVMPY_DYNLINK=0
|
||||
set INCLUDE=%LIBRARY_INC%
|
||||
set LIBPATH=%LIBRARY_LIB%
|
||||
set LIB=%LIBRARY_LIB%
|
||||
%PYTHON% setup.py install
|
||||
if errorlevel 1 exit 1
|
||||
13
buildscripts/condarecipe/build.sh
Normal file
13
buildscripts/condarecipe/build.sh
Normal file
|
|
@ -0,0 +1,13 @@
|
|||
#!/bin/bash
|
||||
|
||||
if [[ (`uname` == Linux) && (`uname -m` != armv6l) ]]
|
||||
then
|
||||
export CC=gcc
|
||||
#gcc44
|
||||
export CXX=g++
|
||||
#g++44
|
||||
fi
|
||||
|
||||
export LLVMPY_DYNLINK=$DISTRO_BUILD
|
||||
|
||||
$PYTHON setup.py install
|
||||
28
buildscripts/condarecipe/meta.yaml
Normal file
28
buildscripts/condarecipe/meta.yaml
Normal file
|
|
@ -0,0 +1,28 @@
|
|||
package:
|
||||
name: llvmpy
|
||||
version: 99.9.9
|
||||
|
||||
source:
|
||||
git_url: git@github.com:llvmpy/llvmpy.git
|
||||
# git_tag: 0.12.0
|
||||
|
||||
requirements:
|
||||
build:
|
||||
- llvm
|
||||
- python
|
||||
#- chrpath [linux]
|
||||
run:
|
||||
- llvm [unix]
|
||||
- python
|
||||
|
||||
test:
|
||||
imports:
|
||||
- llvm
|
||||
- llvmpy
|
||||
- llvmpy._api
|
||||
- llvmpy._capsule
|
||||
- llpython
|
||||
- llvm_array
|
||||
- llvm_cbuilder
|
||||
|
||||
|
||||
22
buildscripts/condarecipe/run_test.py
Normal file
22
buildscripts/condarecipe/run_test.py
Normal file
|
|
@ -0,0 +1,22 @@
|
|||
import sys
|
||||
import platform
|
||||
import llvm
|
||||
|
||||
from llvm.core import Module
|
||||
from llvm.ee import EngineBuilder
|
||||
from llvm.utils import check_intrinsics
|
||||
|
||||
m = Module.new('fjoidajfa')
|
||||
eb = EngineBuilder.new(m)
|
||||
target = eb.select_target()
|
||||
|
||||
print('target.triple=%r' % target.triple)
|
||||
if sys.platform == 'darwin':
|
||||
s = {'64bit': 'x86_64', '32bit': 'x86'}[platform.architecture()[0]]
|
||||
assert target.triple.startswith(s + '-apple-darwin')
|
||||
|
||||
assert llvm.test(verbosity=2, run_isolated=False) == 0
|
||||
#check_intrinsics.main()
|
||||
|
||||
print('llvm.__version__: %s' % llvm.__version__)
|
||||
#assert llvm.__version__ == '0.12.0'
|
||||
157
docs/Makefile
Normal file
157
docs/Makefile
Normal file
|
|
@ -0,0 +1,157 @@
|
|||
# Makefile for Sphinx documentation
|
||||
#
|
||||
|
||||
# You can set these variables from the command line.
|
||||
SPHINXOPTS =
|
||||
SPHINXBUILD = sphinx-build
|
||||
PAPER =
|
||||
BUILDDIR = _build
|
||||
SRCDIR = source
|
||||
|
||||
# Internal variables.
|
||||
PAPEROPT_a4 = -D latex_paper_size=a4
|
||||
PAPEROPT_letter = -D latex_paper_size=letter
|
||||
ALLSPHINXOPTS = -d $(BUILDDIR)/doctrees $(PAPEROPT_$(PAPER)) $(SPHINXOPTS) $(SRCDIR)
|
||||
# the i18n builder cannot share the environment and doctrees with the others
|
||||
I18NSPHINXOPTS = $(PAPEROPT_$(PAPER)) $(SPHINXOPTS) .
|
||||
|
||||
.PHONY: help clean html dirhtml singlehtml pickle json htmlhelp qthelp devhelp epub latex latexpdf text man changes linkcheck doctest gettext
|
||||
|
||||
help:
|
||||
@echo "Please use \`make <target>' where <target> is one of"
|
||||
@echo " html to make standalone HTML files"
|
||||
@echo " dirhtml to make HTML files named index.html in directories"
|
||||
@echo " singlehtml to make a single large HTML file"
|
||||
@echo " pickle to make pickle files"
|
||||
@echo " json to make JSON files"
|
||||
@echo " htmlhelp to make HTML files and a HTML help project"
|
||||
@echo " qthelp to make HTML files and a qthelp project"
|
||||
@echo " devhelp to make HTML files and a Devhelp project"
|
||||
@echo " epub to make an epub"
|
||||
@echo " latex to make LaTeX files, you can set PAPER=a4 or PAPER=letter"
|
||||
@echo " latexpdf to make LaTeX files and run them through pdflatex"
|
||||
@echo " text to make text files"
|
||||
@echo " man to make manual pages"
|
||||
@echo " texinfo to make Texinfo files"
|
||||
@echo " info to make Texinfo files and run them through makeinfo"
|
||||
@echo " gettext to make PO message catalogs"
|
||||
@echo " changes to make an overview of all changed/added/deprecated items"
|
||||
@echo " linkcheck to check all external links for integrity"
|
||||
@echo " doctest to run all doctests embedded in the documentation (if enabled)"
|
||||
|
||||
clean:
|
||||
-rm -rf $(BUILDDIR)/*
|
||||
|
||||
html:
|
||||
$(SPHINXBUILD) -b html $(ALLSPHINXOPTS) $(BUILDDIR)/html
|
||||
@echo
|
||||
@echo "Build finished. The HTML pages are in $(BUILDDIR)/html."
|
||||
|
||||
dirhtml:
|
||||
$(SPHINXBUILD) -b dirhtml $(ALLSPHINXOPTS) $(BUILDDIR)/dirhtml
|
||||
@echo
|
||||
@echo "Build finished. The HTML pages are in $(BUILDDIR)/dirhtml."
|
||||
|
||||
singlehtml:
|
||||
$(SPHINXBUILD) -b singlehtml $(ALLSPHINXOPTS) $(BUILDDIR)/singlehtml
|
||||
@echo
|
||||
@echo "Build finished. The HTML page is in $(BUILDDIR)/singlehtml."
|
||||
|
||||
pickle:
|
||||
$(SPHINXBUILD) -b pickle $(ALLSPHINXOPTS) $(BUILDDIR)/pickle
|
||||
@echo
|
||||
@echo "Build finished; now you can process the pickle files."
|
||||
|
||||
json:
|
||||
$(SPHINXBUILD) -b json $(ALLSPHINXOPTS) $(BUILDDIR)/json
|
||||
@echo
|
||||
@echo "Build finished; now you can process the JSON files."
|
||||
|
||||
htmlhelp:
|
||||
$(SPHINXBUILD) -b htmlhelp $(ALLSPHINXOPTS) $(BUILDDIR)/htmlhelp
|
||||
@echo
|
||||
@echo "Build finished; now you can run HTML Help Workshop with the" \
|
||||
".hhp project file in $(BUILDDIR)/htmlhelp."
|
||||
|
||||
qthelp:
|
||||
$(SPHINXBUILD) -b qthelp $(ALLSPHINXOPTS) $(BUILDDIR)/qthelp
|
||||
@echo
|
||||
@echo "Build finished; now you can run "qcollectiongenerator" with the" \
|
||||
".qhcp project file in $(BUILDDIR)/qthelp, like this:"
|
||||
@echo "# qcollectiongenerator $(BUILDDIR)/qthelp/llvmpy.qhcp"
|
||||
@echo "To view the help file:"
|
||||
@echo "# assistant -collectionFile $(BUILDDIR)/qthelp/llvmpy.qhc"
|
||||
|
||||
devhelp:
|
||||
$(SPHINXBUILD) -b devhelp $(ALLSPHINXOPTS) $(BUILDDIR)/devhelp
|
||||
@echo
|
||||
@echo "Build finished."
|
||||
@echo "To view the help file:"
|
||||
@echo "# mkdir -p $$HOME/.local/share/devhelp/llvmpy"
|
||||
@echo "# ln -s $(BUILDDIR)/devhelp $$HOME/.local/share/devhelp/llvmpy"
|
||||
@echo "# devhelp"
|
||||
|
||||
epub:
|
||||
$(SPHINXBUILD) -b epub $(ALLSPHINXOPTS) $(BUILDDIR)/epub
|
||||
@echo
|
||||
@echo "Build finished. The epub file is in $(BUILDDIR)/epub."
|
||||
|
||||
latex:
|
||||
$(SPHINXBUILD) -b latex $(ALLSPHINXOPTS) $(BUILDDIR)/latex
|
||||
@echo
|
||||
@echo "Build finished; the LaTeX files are in $(BUILDDIR)/latex."
|
||||
@echo "Run \`make' in that directory to run these through (pdf)latex" \
|
||||
"(use \`make latexpdf' here to do that automatically)."
|
||||
|
||||
latexpdf:
|
||||
$(SPHINXBUILD) -b latex $(ALLSPHINXOPTS) $(BUILDDIR)/latex
|
||||
@echo "Running LaTeX files through pdflatex..."
|
||||
$(MAKE) -C $(BUILDDIR)/latex all-pdf
|
||||
@echo "pdflatex finished; the PDF files are in $(BUILDDIR)/latex."
|
||||
|
||||
text:
|
||||
$(SPHINXBUILD) -b text $(ALLSPHINXOPTS) $(BUILDDIR)/text
|
||||
@echo
|
||||
@echo "Build finished. The text files are in $(BUILDDIR)/text."
|
||||
|
||||
man:
|
||||
$(SPHINXBUILD) -b man $(ALLSPHINXOPTS) $(BUILDDIR)/man
|
||||
@echo
|
||||
@echo "Build finished. The manual pages are in $(BUILDDIR)/man."
|
||||
|
||||
texinfo:
|
||||
$(SPHINXBUILD) -b texinfo $(ALLSPHINXOPTS) $(BUILDDIR)/texinfo
|
||||
@echo
|
||||
@echo "Build finished. The Texinfo files are in $(BUILDDIR)/texinfo."
|
||||
@echo "Run \`make' in that directory to run these through makeinfo" \
|
||||
"(use \`make info' here to do that automatically)."
|
||||
|
||||
info:
|
||||
$(SPHINXBUILD) -b texinfo $(ALLSPHINXOPTS) $(BUILDDIR)/texinfo
|
||||
@echo "Running Texinfo files through makeinfo..."
|
||||
make -C $(BUILDDIR)/texinfo info
|
||||
@echo "makeinfo finished; the Info files are in $(BUILDDIR)/texinfo."
|
||||
|
||||
gettext:
|
||||
$(SPHINXBUILD) -b gettext $(I18NSPHINXOPTS) $(BUILDDIR)/locale
|
||||
@echo
|
||||
@echo "Build finished. The message catalogs are in $(BUILDDIR)/locale."
|
||||
|
||||
changes:
|
||||
$(SPHINXBUILD) -b changes $(ALLSPHINXOPTS) $(BUILDDIR)/changes
|
||||
@echo
|
||||
@echo "The overview file is in $(BUILDDIR)/changes."
|
||||
|
||||
linkcheck:
|
||||
$(SPHINXBUILD) -b linkcheck $(ALLSPHINXOPTS) $(BUILDDIR)/linkcheck
|
||||
@echo
|
||||
@echo "Link check complete; look for any errors in the above output " \
|
||||
"or in $(BUILDDIR)/linkcheck/output.txt."
|
||||
|
||||
doctest:
|
||||
$(SPHINXBUILD) -b doctest $(ALLSPHINXOPTS) $(BUILDDIR)/doctest
|
||||
@echo "Testing of doctests in the sources finished, look at the " \
|
||||
"results in $(BUILDDIR)/doctest/output.txt."
|
||||
|
||||
gh-pages: clean html
|
||||
python gh-pages.py
|
||||
138
docs/gh-pages.py
Executable file
138
docs/gh-pages.py
Executable file
|
|
@ -0,0 +1,138 @@
|
|||
#!/usr/bin/env python
|
||||
"""Script to commit the doc build outputs into the github-pages repo.
|
||||
|
||||
Use:
|
||||
|
||||
gh-pages.py [tag]
|
||||
|
||||
If no tag is given, the current output of 'git describe' is used. If given,
|
||||
that is how the resulting directory will be named.
|
||||
|
||||
In practice, you should use either actual clean tags from a current build or
|
||||
something like 'current' as a stable URL for the most current version of the """
|
||||
|
||||
#-----------------------------------------------------------------------------
|
||||
# Imports
|
||||
#-----------------------------------------------------------------------------
|
||||
import os
|
||||
import re
|
||||
import shutil
|
||||
import sys
|
||||
from os import chdir as cd
|
||||
from os.path import join as pjoin
|
||||
|
||||
from subprocess import Popen, PIPE, CalledProcessError, check_call
|
||||
|
||||
#-----------------------------------------------------------------------------
|
||||
# Globals
|
||||
#-----------------------------------------------------------------------------
|
||||
|
||||
pages_dir = 'gh-pages'
|
||||
html_dir = '_build/html'
|
||||
pdf_dir = '_build/latex'
|
||||
pages_repo = 'https://github.com/llvmpy/llvmpy-doc.git'
|
||||
|
||||
#-----------------------------------------------------------------------------
|
||||
# Functions
|
||||
#-----------------------------------------------------------------------------
|
||||
def sh(cmd):
|
||||
"""Execute command in a subshell, return status code."""
|
||||
return check_call(cmd, shell=True)
|
||||
|
||||
|
||||
def sh2(cmd):
|
||||
"""Execute command in a subshell, return stdout.
|
||||
|
||||
Stderr is unbuffered from the subshell.x"""
|
||||
p = Popen(cmd, stdout=PIPE, shell=True)
|
||||
out = p.communicate()[0]
|
||||
retcode = p.returncode
|
||||
if retcode:
|
||||
raise CalledProcessError(retcode, cmd)
|
||||
else:
|
||||
return out.rstrip()
|
||||
|
||||
|
||||
def sh3(cmd):
|
||||
"""Execute command in a subshell, return stdout, stderr
|
||||
|
||||
If anything appears in stderr, print it out to sys.stderr"""
|
||||
p = Popen(cmd, stdout=PIPE, stderr=PIPE, shell=True)
|
||||
out, err = p.communicate()
|
||||
retcode = p.returncode
|
||||
if retcode:
|
||||
raise CalledProcessError(retcode, cmd)
|
||||
else:
|
||||
return out.rstrip(), err.rstrip()
|
||||
|
||||
|
||||
def init_repo(path):
|
||||
"""clone the gh-pages repo if we haven't already."""
|
||||
sh("git clone %s %s"%(pages_repo, path))
|
||||
here = os.getcwdu()
|
||||
cd(path)
|
||||
sh('git checkout gh-pages')
|
||||
cd(here)
|
||||
|
||||
#-----------------------------------------------------------------------------
|
||||
# Script starts
|
||||
#-----------------------------------------------------------------------------
|
||||
if __name__ == '__main__':
|
||||
# The tag can be given as a positional argument
|
||||
try:
|
||||
tag = sys.argv[1]
|
||||
except IndexError:
|
||||
try:
|
||||
tag = sh2('git describe --exact-match')
|
||||
except CalledProcessError:
|
||||
tag = "dev" # Fallback
|
||||
|
||||
startdir = os.getcwdu()
|
||||
if not os.path.exists(pages_dir):
|
||||
# init the repo
|
||||
init_repo(pages_dir)
|
||||
else:
|
||||
# ensure up-to-date before operating
|
||||
cd(pages_dir)
|
||||
sh('git checkout gh-pages')
|
||||
sh('git pull')
|
||||
cd(startdir)
|
||||
|
||||
dest = pjoin(pages_dir, tag)
|
||||
|
||||
# don't `make html` here, because gh-pages already depends on html in Makefile
|
||||
# sh('make html')
|
||||
if tag != 'dev':
|
||||
# only build pdf for non-dev targets
|
||||
#sh2('make pdf')
|
||||
pass
|
||||
|
||||
# This is pretty unforgiving: we unconditionally nuke the destination
|
||||
# directory, and then copy the html tree in there
|
||||
shutil.rmtree(dest, ignore_errors=True)
|
||||
shutil.copytree(html_dir, dest)
|
||||
if tag != 'dev':
|
||||
#shutil.copy(pjoin(pdf_dir, 'ipython.pdf'), pjoin(dest, 'ipython.pdf'))
|
||||
pass
|
||||
|
||||
try:
|
||||
cd(pages_dir)
|
||||
status = sh2('git status | head -1')
|
||||
branch = re.match('\# On branch (.*)$', status).group(1)
|
||||
if branch != 'gh-pages':
|
||||
e = 'On %r, git branch is %r, MUST be "gh-pages"' % (pages_dir,
|
||||
branch)
|
||||
raise RuntimeError(e)
|
||||
|
||||
sh('git add -A %s' % tag)
|
||||
sh('git commit -m"Updated doc release: %s"' % tag)
|
||||
print
|
||||
print 'Most recent 3 commits:'
|
||||
sys.stdout.flush()
|
||||
sh('git --no-pager log --oneline HEAD~3..')
|
||||
finally:
|
||||
cd(startdir)
|
||||
|
||||
print
|
||||
print 'Now verify the build in: %r' % dest
|
||||
print "If everything looks good, 'git push'"
|
||||
259
docs/source/conf.py
Normal file
259
docs/source/conf.py
Normal file
|
|
@ -0,0 +1,259 @@
|
|||
# -*- coding: utf-8 -*-
|
||||
#
|
||||
# llvmpy documentation build configuration file, created by
|
||||
# sphinx-quickstart on Wed Aug 8 17:33:58 2012.
|
||||
#
|
||||
# This file is execfile()d with the current directory set to its containing dir.
|
||||
#
|
||||
# Note that not all possible configuration values are present in this
|
||||
# autogenerated file.
|
||||
#
|
||||
# All configuration values have a default; values that are commented out
|
||||
# serve to show the default.
|
||||
|
||||
import sys, os, glob
|
||||
|
||||
# If extensions (or modules to document with autodoc) are in another directory,
|
||||
# add these directories to sys.path here. If the directory is relative to the
|
||||
# documentation root, use os.path.abspath to make it absolute, like shown here.
|
||||
#sys.path.insert(0, os.path.abspath('../..'))
|
||||
|
||||
# Support sphinx.ext.autodoc to extract docstrings from modules without installing
|
||||
# complete package.
|
||||
# The python modules depend on _core, so we must build entire package first though.
|
||||
built_lib = glob.glob('../../build/lib.*-%d.%d/' % sys.version_info[:2])
|
||||
if not built_lib:
|
||||
sys.stderr.write("WARNING: To build complete documentation you must build "
|
||||
"package first\n")
|
||||
else:
|
||||
# lib dir has platform suffix
|
||||
sys.path.insert(0, os.path.abspath(built_lib[0]))
|
||||
|
||||
# -- General configuration -----------------------------------------------------
|
||||
|
||||
# If your documentation needs a minimal Sphinx version, state it here.
|
||||
#needs_sphinx = '1.0'
|
||||
|
||||
# Add any Sphinx extension module names here, as strings. They can be extensions
|
||||
# coming with Sphinx (named 'sphinx.ext.*') or your custom ones.
|
||||
extensions = ['sphinx.ext.mathjax', 'sphinx.ext.autodoc']
|
||||
|
||||
# Add any paths that contain templates here, relative to this directory.
|
||||
templates_path = ['_templates']
|
||||
|
||||
# The suffix of source filenames.
|
||||
source_suffix = '.rst'
|
||||
|
||||
# The encoding of source files.
|
||||
#source_encoding = 'utf-8-sig'
|
||||
|
||||
# The master toctree document.
|
||||
master_doc = 'index'
|
||||
|
||||
# General information about the project.
|
||||
project = u'llvmpy'
|
||||
copyright = u'2013, Mahadevan R (2008-2010), Continuum Analytics (2012-2013)'
|
||||
|
||||
# The version info for the project you're documenting, acts as replacement for
|
||||
# |version| and |release|, also used in various other places throughout the
|
||||
# built documents.
|
||||
#
|
||||
try:
|
||||
import llvm
|
||||
version_strs = llvm.__version__.split('.')
|
||||
# The short X.Y version.
|
||||
version = '.'.join(version_strs[:2])
|
||||
# The full version, including alpha/beta/rc tags.
|
||||
release = '%s.%s' % (version, '-'.join(version_strs[2].split('-')[:2]))
|
||||
except ImportError:
|
||||
version = 'unknown-version'
|
||||
release = 'unknown-release'
|
||||
|
||||
# The language for content autogenerated by Sphinx. Refer to documentation
|
||||
# for a list of supported languages.
|
||||
#language = None
|
||||
|
||||
# There are two options for replacing |today|: either, you set today to some
|
||||
# non-false value, then it is used:
|
||||
#today = ''
|
||||
# Else, today_fmt is used as the format for a strftime call.
|
||||
#today_fmt = '%B %d, %Y'
|
||||
|
||||
# List of patterns, relative to source directory, that match files and
|
||||
# directories to ignore when looking for source files.
|
||||
exclude_patterns = ['_build']
|
||||
|
||||
# The reST default role (used for this markup: `text`) to use for all documents.
|
||||
#default_role = None
|
||||
|
||||
# If true, '()' will be appended to :func: etc. cross-reference text.
|
||||
#add_function_parentheses = True
|
||||
|
||||
# If true, the current module name will be prepended to all description
|
||||
# unit titles (such as .. function::).
|
||||
#add_module_names = True
|
||||
|
||||
# If true, sectionauthor and moduleauthor directives will be shown in the
|
||||
# output. They are ignored by default.
|
||||
#show_authors = False
|
||||
|
||||
# The name of the Pygments (syntax highlighting) style to use.
|
||||
pygments_style = 'sphinx'
|
||||
|
||||
# A list of ignored prefixes for module index sorting.
|
||||
#modindex_common_prefix = []
|
||||
|
||||
|
||||
# -- Options for HTML output ---------------------------------------------------
|
||||
|
||||
# The theme to use for HTML and HTML Help pages. See the documentation for
|
||||
# a list of builtin themes.
|
||||
html_theme = 'default'
|
||||
|
||||
# Theme options are theme-specific and customize the look and feel of a theme
|
||||
# further. For a list of options available for each theme, see the
|
||||
# documentation.
|
||||
#html_theme_options = {}
|
||||
|
||||
# Add any paths that contain custom themes here, relative to this directory.
|
||||
#html_theme_path = []
|
||||
|
||||
# The name for this set of Sphinx documents. If None, it defaults to
|
||||
# "<project> v<release> documentation".
|
||||
#html_title = None
|
||||
|
||||
# A shorter title for the navigation bar. Default is the same as html_title.
|
||||
#html_short_title = None
|
||||
|
||||
# The name of an image file (relative to this directory) to place at the top
|
||||
# of the sidebar.
|
||||
#html_logo = None
|
||||
|
||||
# The name of an image file (within the static path) to use as favicon of the
|
||||
# docs. This file should be a Windows icon file (.ico) being 16x16 or 32x32
|
||||
# pixels large.
|
||||
#html_favicon = None
|
||||
|
||||
# Add any paths that contain custom static files (such as style sheets) here,
|
||||
# relative to this directory. They are copied after the builtin static files,
|
||||
# so a file named "default.css" will overwrite the builtin "default.css".
|
||||
html_static_path = ['_static']
|
||||
|
||||
# If not '', a 'Last updated on:' timestamp is inserted at every page bottom,
|
||||
# using the given strftime format.
|
||||
#html_last_updated_fmt = '%b %d, %Y'
|
||||
|
||||
# If true, SmartyPants will be used to convert quotes and dashes to
|
||||
# typographically correct entities.
|
||||
#html_use_smartypants = True
|
||||
|
||||
# Custom sidebar templates, maps document names to template names.
|
||||
#html_sidebars = {}
|
||||
|
||||
# Additional templates that should be rendered to pages, maps page names to
|
||||
# template names.
|
||||
#html_additional_pages = {}
|
||||
|
||||
# If false, no module index is generated.
|
||||
#html_domain_indices = True
|
||||
|
||||
# If false, no index is generated.
|
||||
#html_use_index = True
|
||||
|
||||
# If true, the index is split into individual pages for each letter.
|
||||
#html_split_index = False
|
||||
|
||||
# If true, links to the reST sources are added to the pages.
|
||||
#html_show_sourcelink = True
|
||||
|
||||
# If true, "Created using Sphinx" is shown in the HTML footer. Default is True.
|
||||
#html_show_sphinx = True
|
||||
|
||||
# If true, "(C) Copyright ..." is shown in the HTML footer. Default is True.
|
||||
#html_show_copyright = True
|
||||
|
||||
# If true, an OpenSearch description file will be output, and all pages will
|
||||
# contain a <link> tag referring to it. The value of this option must be the
|
||||
# base URL from which the finished HTML is served.
|
||||
#html_use_opensearch = ''
|
||||
|
||||
# This is the file name suffix for HTML files (e.g. ".xhtml").
|
||||
#html_file_suffix = None
|
||||
|
||||
# Output file base name for HTML help builder.
|
||||
htmlhelp_basename = 'llvmpydoc'
|
||||
|
||||
|
||||
# -- Options for LaTeX output --------------------------------------------------
|
||||
|
||||
latex_elements = {
|
||||
# The paper size ('letterpaper' or 'a4paper').
|
||||
#'papersize': 'letterpaper',
|
||||
|
||||
# The font size ('10pt', '11pt' or '12pt').
|
||||
#'pointsize': '10pt',
|
||||
|
||||
# Additional stuff for the LaTeX preamble.
|
||||
#'preamble': '',
|
||||
}
|
||||
|
||||
# Grouping the document tree into LaTeX files. List of tuples
|
||||
# (source start file, target name, title, author, documentclass [howto/manual]).
|
||||
latex_documents = [
|
||||
('index', 'llvmpy.tex', u'llvmpy Documentation',
|
||||
u'Mahadevan R (2008-2010), Continuum Analytics (2012)', 'manual'),
|
||||
]
|
||||
|
||||
# The name of an image file (relative to this directory) to place at the top of
|
||||
# the title page.
|
||||
#latex_logo = None
|
||||
|
||||
# For "manual" documents, if this is true, then toplevel headings are parts,
|
||||
# not chapters.
|
||||
#latex_use_parts = False
|
||||
|
||||
# If true, show page references after internal links.
|
||||
#latex_show_pagerefs = False
|
||||
|
||||
# If true, show URL addresses after external links.
|
||||
#latex_show_urls = False
|
||||
|
||||
# Documents to append as an appendix to all manuals.
|
||||
#latex_appendices = []
|
||||
|
||||
# If false, no module index is generated.
|
||||
#latex_domain_indices = True
|
||||
|
||||
|
||||
# -- Options for manual page output --------------------------------------------
|
||||
|
||||
# One entry per manual page. List of tuples
|
||||
# (source start file, name, description, authors, manual section).
|
||||
man_pages = [
|
||||
('index', 'llvmpy', u'llvmpy Documentation',
|
||||
[u'Mahadevan R (2008-2010), Continuum Analytics (2012)'], 1)
|
||||
]
|
||||
|
||||
# If true, show URL addresses after external links.
|
||||
#man_show_urls = False
|
||||
|
||||
|
||||
# -- Options for Texinfo output ------------------------------------------------
|
||||
|
||||
# Grouping the document tree into Texinfo files. List of tuples
|
||||
# (source start file, target name, title, author,
|
||||
# dir menu entry, description, category)
|
||||
texinfo_documents = [
|
||||
('index', 'llvmpy', u'llvmpy Documentation',
|
||||
u'Mahadevan R (2008-2010), Continuum Analytics (2012)', 'llvmpy', 'One line description of project.',
|
||||
'Miscellaneous'),
|
||||
]
|
||||
|
||||
# Documents to append as an appendix to all manuals.
|
||||
#texinfo_appendices = []
|
||||
|
||||
# If false, no module index is generated.
|
||||
#texinfo_domain_indices = True
|
||||
|
||||
# How to display URL addresses: 'footnote', 'no', or 'inline'.
|
||||
#texinfo_show_urls = 'footnote'
|
||||
147
docs/source/doc/comparision.rst
Normal file
147
docs/source/doc/comparision.rst
Normal file
|
|
@ -0,0 +1,147 @@
|
|||
+--------------------------------+
|
||||
| layout: page |
|
||||
+--------------------------------+
|
||||
| title: Comparison Operations |
|
||||
+--------------------------------+
|
||||
|
||||
Integer Comparision # {#icmp}
|
||||
=============================
|
||||
|
||||
Predicates for use with ``icmp`` instruction are listed below. All of
|
||||
these are integer constants defined in the ``llvm.core`` module.
|
||||
|
||||
``ICMP_EQ``
|
||||
-----------
|
||||
|
||||
Equality
|
||||
|
||||
``ICMP_NE``
|
||||
-----------
|
||||
|
||||
Inequality
|
||||
|
||||
``ICMP_UGT``
|
||||
------------
|
||||
|
||||
Unsigned greater than
|
||||
|
||||
``ICMP_UGE``
|
||||
------------
|
||||
|
||||
Unsigned greater than or equal
|
||||
|
||||
``ICMP_ULT``
|
||||
------------
|
||||
|
||||
Unsigned less than
|
||||
|
||||
``ICMP_ULE``
|
||||
------------
|
||||
|
||||
Unsigned less than or equal
|
||||
|
||||
``ICMP_SGT``
|
||||
------------
|
||||
|
||||
Signed greater than
|
||||
|
||||
``ICMP_SGE``
|
||||
------------
|
||||
|
||||
Signed greater than or equal
|
||||
|
||||
``ICMP_SLT``
|
||||
------------
|
||||
|
||||
Signed less than
|
||||
|
||||
``ICMP_SLE``
|
||||
------------
|
||||
|
||||
Signed less than or equal
|
||||
|
||||
Float Comparision # {#fcmp}
|
||||
===========================
|
||||
|
||||
Predicates for use with ``fcmp`` instruction are listed below. All of
|
||||
these are integer constants defined in the ``llvm.core`` module.
|
||||
|
||||
``FCMP_FALSE``
|
||||
--------------
|
||||
|
||||
Always false
|
||||
|
||||
``FCMP_OEQ``
|
||||
------------
|
||||
|
||||
True if ordered and equal
|
||||
|
||||
``FCMP_OGT``
|
||||
------------
|
||||
|
||||
True if ordered and greater than
|
||||
|
||||
``FCMP_OGE``
|
||||
------------
|
||||
|
||||
True if ordered and greater than or equal
|
||||
|
||||
``FCMP_OLT``
|
||||
------------
|
||||
|
||||
True if ordered and less than
|
||||
|
||||
``FCMP_OLE``
|
||||
------------
|
||||
|
||||
True if ordered and less than or equal
|
||||
|
||||
``FCMP_ONE``
|
||||
------------
|
||||
|
||||
True if ordered and operands are unequal
|
||||
|
||||
``FCMP_ORD``
|
||||
------------
|
||||
|
||||
True if ordered (no NaNs)
|
||||
|
||||
``FCMP_UNO``
|
||||
------------
|
||||
|
||||
True if unordered: ``isnan(X) | isnan(Y)``
|
||||
|
||||
``FCMP_UEQ``
|
||||
------------
|
||||
|
||||
True if unordered or equal
|
||||
|
||||
``FCMP_UGT``
|
||||
------------
|
||||
|
||||
True if unordered or greater than
|
||||
|
||||
``FCMP_UGE``
|
||||
------------
|
||||
|
||||
True if unordered, greater than or equal
|
||||
|
||||
``FCMP_ULT``
|
||||
------------
|
||||
|
||||
True if unordered, or less than
|
||||
|
||||
``FCMP_ULE``
|
||||
------------
|
||||
|
||||
True if unordered, less than or equal
|
||||
|
||||
``FCMP_UNE``
|
||||
------------
|
||||
|
||||
True if unordered or not equal
|
||||
|
||||
``FCMP_TRUE``
|
||||
-------------
|
||||
|
||||
Always true
|
||||
9
docs/source/doc/core.rst
Normal file
9
docs/source/doc/core.rst
Normal file
|
|
@ -0,0 +1,9 @@
|
|||
********************************
|
||||
llvm.core
|
||||
********************************
|
||||
|
||||
.. toctree::
|
||||
:titlesonly:
|
||||
:glob:
|
||||
|
||||
llvm.core.*
|
||||
12
docs/source/doc/examples.rst
Normal file
12
docs/source/doc/examples.rst
Normal file
|
|
@ -0,0 +1,12 @@
|
|||
********************************
|
||||
Examples and LLVM Tutorials
|
||||
********************************
|
||||
|
||||
.. toctree::
|
||||
:maxdepth: 1
|
||||
|
||||
firstexample.rst
|
||||
examples/index.rst
|
||||
kaleidoscope/index.rst
|
||||
|
||||
|
||||
36
docs/source/doc/examples/JITTutorial1.rst
Normal file
36
docs/source/doc/examples/JITTutorial1.rst
Normal file
|
|
@ -0,0 +1,36 @@
|
|||
A First Function
|
||||
==================
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
#!/usr/bin/env python
|
||||
|
||||
from llvm.core import *
|
||||
|
||||
#create a module
|
||||
module = Module.new("tut1")
|
||||
|
||||
#create a function type taking 3 32-bit integers, return a 32-bit integer
|
||||
ty_int = Type.int(32)
|
||||
func_type = Type.function(ty_int, (ty_int,)*3)
|
||||
|
||||
#create a function of that type
|
||||
mul_add = Function.new (module, func_type, "mul_add")
|
||||
mul_add.calling_convention = CC_C
|
||||
x = mul_add.args[0]; x.name = "x"
|
||||
y = mul_add.args[1]; y.name = "y"
|
||||
z = mul_add.args[2]; z.name = "z"
|
||||
|
||||
#implement the function
|
||||
|
||||
#new block
|
||||
blk = mul_add.append_basic_block("entry")
|
||||
|
||||
#IR builder
|
||||
bldr = Builder.new(blk)
|
||||
tmp_1 = bldr.mul(x, y, "tmp_1")
|
||||
tmp_2 = bldr.add(tmp_1, z, "tmp_2")
|
||||
|
||||
bldr.ret(tmp_2)
|
||||
|
||||
print module
|
||||
55
docs/source/doc/examples/JITTutorial2.rst
Normal file
55
docs/source/doc/examples/JITTutorial2.rst
Normal file
|
|
@ -0,0 +1,55 @@
|
|||
A More Complicated Function
|
||||
===========================
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
#!/usr/bin/env python
|
||||
|
||||
from llvm.core import *
|
||||
|
||||
#create a module
|
||||
module = Module.new("tut2")
|
||||
|
||||
#create a function type taking 2 integers, return a 32-bit integer
|
||||
ty_int = Type.int(32)
|
||||
func_type = Type.function(ty_int, (ty_int, ty_int))
|
||||
|
||||
#create a function of that type
|
||||
gcd = Function.new(module, func_type, "gcd")
|
||||
|
||||
#name function args
|
||||
x = gcd.args[0]; x.name = "x"
|
||||
y = gcd.args[1]; y.name = "y"
|
||||
|
||||
#implement the function
|
||||
|
||||
#blocks...
|
||||
entry = gcd.append_basic_block("entry")
|
||||
ret = gcd.append_basic_block("return")
|
||||
cond_false = gcd.append_basic_block("cond_false")
|
||||
cond_true = gcd.append_basic_block("cond_true")
|
||||
cond_false_2 = gcd.append_basic_block("cond_false_2")
|
||||
|
||||
#create a llvm::IRBuilder
|
||||
bldr = Builder.new(entry)
|
||||
x_eq_y = bldr.icmp(IPRED_EQ, x, y, "tmp")
|
||||
bldr.cbranch(x_eq_y, ret, cond_false)
|
||||
|
||||
bldr.position_at_end (ret)
|
||||
bldr.ret(x)
|
||||
|
||||
bldr.position_at_end(cond_false)
|
||||
x_lt_y = bldr.icmp(IPRED_ULT, x, y, "tmp")
|
||||
bldr.cbranch(x_lt_y, cond_true, cond_false_2)
|
||||
|
||||
bldr.position_at_end(cond_true)
|
||||
y_sub_x = bldr.sub(y, x, "tmp")
|
||||
recur_1 = bldr.call(gcd, (x, y_sub_x,), "tmp")
|
||||
bldr.ret(recur_1)
|
||||
|
||||
bldr.position_at_end(cond_false_2)
|
||||
x_sub_y = bldr.sub(x, y, "x_sub_y")
|
||||
recur_2 = bldr.call(gcd, (x_sub_y, y,), "tmp")
|
||||
bldr.ret(recur_2)
|
||||
|
||||
print module
|
||||
10
docs/source/doc/examples/index.rst
Normal file
10
docs/source/doc/examples/index.rst
Normal file
|
|
@ -0,0 +1,10 @@
|
|||
LLVM Tutorials
|
||||
==============
|
||||
|
||||
The following JIT tutorials were contributed by Sebastien Binet.
|
||||
|
||||
.. toctree::
|
||||
:titlesonly:
|
||||
|
||||
JITTutorial1.rst
|
||||
JITTutorial2.rst
|
||||
125
docs/source/doc/firstexample.rst
Normal file
125
docs/source/doc/firstexample.rst
Normal file
|
|
@ -0,0 +1,125 @@
|
|||
Examples
|
||||
========
|
||||
|
||||
A Simple Function
|
||||
-----------------
|
||||
|
||||
Let's create a (LLVM) module containing a single function, corresponding
|
||||
to the ``C`` function:
|
||||
|
||||
.. code-block:: c
|
||||
|
||||
int sum(int a, int b)
|
||||
{
|
||||
return a + b;
|
||||
}
|
||||
|
||||
Here's how it looks in llvmpy:
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
#!/usr/bin/env python
|
||||
|
||||
# Import the llvmpy modules.
|
||||
from llvm import *
|
||||
from llvm.core import *
|
||||
|
||||
# Create an (empty) module.
|
||||
my_module = Module.new('my_module')
|
||||
|
||||
# All the types involved here are "int"s. This type is represented
|
||||
# by an object of the llvm.core.Type class:
|
||||
ty_int = Type.int() # by default 32 bits
|
||||
|
||||
# We need to represent the class of functions that accept two integers
|
||||
# and return an integer. This is represented by an object of the
|
||||
# function type (llvm.core.FunctionType):
|
||||
ty_func = Type.function(ty_int, [ty_int, ty_int])
|
||||
|
||||
# Now we need a function named 'sum' of this type. Functions are not
|
||||
# free-standing (in llvmpy); it needs to be contained in a module.
|
||||
|
||||
f_sum = my_module.add_function(ty_func, "sum")
|
||||
|
||||
# Let's name the function arguments as 'a' and 'b'.
|
||||
f_sum.args[0].name = "a"
|
||||
f_sum.args[1].name = "b"
|
||||
|
||||
# Our function needs a "basic block" -- a set of instructions that
|
||||
# end with a terminator (like return, branch etc.). By convention
|
||||
# the first block is called "entry".
|
||||
bb = f_sum.append_basic_block("entry")
|
||||
|
||||
# Let's add instructions into the block. For this, we need an
|
||||
# instruction builder:
|
||||
builder = Builder.new(bb)
|
||||
|
||||
# OK, now for the instructions themselves. We'll create an add
|
||||
# instruction that returns the sum as a value, which we'll use
|
||||
# a ret instruction to return.
|
||||
tmp = builder.add(f_sum.args[0], f_sum.args[1], "tmp")
|
||||
builder.ret(tmp)
|
||||
|
||||
# We've completed the definition now! Let's see the LLVM assembly
|
||||
# language representation of what we've created:
|
||||
|
||||
print my_module
|
||||
|
||||
Here is the output:
|
||||
|
||||
.. code-block:: llvm
|
||||
|
||||
; ModuleID = 'my_module'
|
||||
|
||||
define i32 @sum(i32 %a, i32 %b) {
|
||||
entry:
|
||||
%tmp = add i32 %a, %b ; <i32> [#uses=1]
|
||||
ret i32 %tmp
|
||||
}
|
||||
|
||||
Adding JIT Compilation
|
||||
----------------------
|
||||
|
||||
Let's compile this function in-memory and run it.
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
#!/usr/bin/env python
|
||||
|
||||
# Import the llvmpy modules.
|
||||
|
||||
from llvm import *
|
||||
from llvm.core import *
|
||||
from llvm.ee import * # new import: ee = Execution Engine
|
||||
|
||||
#Create a module, as in the previous example.
|
||||
my_module = Module.new('my_module')
|
||||
ty_int = Type.int() # by default 32 bits
|
||||
ty_func = Type.function(ty_int, [ty_int, ty_int])
|
||||
f_sum = my_module.add_function(ty_func, "sum")
|
||||
f_sum.args[0].name = "a"
|
||||
f_sum.args[1].name = "b"
|
||||
bb = f_sum.append_basic_block("entry")
|
||||
builder = Builder.new(bb)
|
||||
tmp = builder.add(f_sum.args[0], f_sum.args[1], "tmp")
|
||||
builder.ret(tmp)
|
||||
|
||||
# Create an execution engine object. This will create a JIT compiler
|
||||
# on platforms that support it, or an interpreter otherwise.
|
||||
ee = ExecutionEngine.new(my_module)
|
||||
|
||||
# The arguments needs to be passed as "GenericValue" objects.
|
||||
arg1 = GenericValue.int(ty_int, 100)
|
||||
arg2 = GenericValue.int(ty_int, 42)
|
||||
|
||||
# Now let's compile and run!
|
||||
retval = ee.run_function(f_sum, [arg1, arg2])
|
||||
|
||||
# The return value is also GenericValue. Let's print it.
|
||||
print "returned", retval.as_int()
|
||||
|
||||
And here's the output:
|
||||
|
||||
::
|
||||
|
||||
returned 142
|
||||
149
docs/source/doc/functions.rst
Normal file
149
docs/source/doc/functions.rst
Normal file
|
|
@ -0,0 +1,149 @@
|
|||
+--------------------+
|
||||
| layout: page |
|
||||
+--------------------+
|
||||
| title: Functions |
|
||||
+--------------------+
|
||||
|
||||
Functions are represented by
|
||||
`llvm.core.Function <llvm.core.Function.html>`_ objects. They are
|
||||
contained within modules, and can be created either with the method
|
||||
``module_obj.add_function`` or the static constructor ``Function.new``.
|
||||
References to functions already present in a module can be retrieved via
|
||||
``module.get_function_named`` or by the static constructor method
|
||||
``Function.get``. All functions in a module can be enumerated by
|
||||
iterating over ``module_obj.functions``.
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
# create a type, representing functions that take
|
||||
an integer and return # a floating point value. ft = Type.function(
|
||||
Type.float(), [ Type.int() ] )
|
||||
|
||||
# create a function of this type
|
||||
f1 = module_obj.add_function(ft, "func1")
|
||||
|
||||
# or equivalently, like this:
|
||||
f2 = Function.new(module_obj, ft, "func2")
|
||||
|
||||
# get a reference to an existing function
|
||||
f3 = module_obj.get_function_named("func3")
|
||||
|
||||
# or like this:
|
||||
f4 = Function.get(module_obj, "func4")
|
||||
|
||||
# list all function names in a module
|
||||
for f in module_obj.functions: print f.name
|
||||
|
||||
|
||||
|
||||
Intrinsic
|
||||
=========
|
||||
|
||||
References to intrinsic functions can be got via the static constructor
|
||||
``intrinsic``. This returns a ``Function`` object, calling which is
|
||||
equivalent to invoking the intrinsic. The ``intrinsic`` method has to be
|
||||
called with a module object, an intrinsic ID (which is a numeric
|
||||
constant) and a list of the types of arguments (which LLVM uses to
|
||||
resolve overloaded intrinsic functions).
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
# get a reference to the llvm.bswap intrinsic
|
||||
bswap = Function.intrinsic(mod, INTR_BSWAP, [Type.int()])
|
||||
|
||||
# call it
|
||||
builder.call(bswap, [value])
|
||||
|
||||
|
||||
|
||||
Here, the constant ``INTR_BSWAP``, available from ``llvm.core``,
|
||||
represents the LLVM intrinsic
|
||||
`llvm.bswap <http://www.llvm.org/docs/LangRef.html#int_bswap>`_. The
|
||||
``[Type.int()]`` selects the version of ``llvm.bswap`` that has a single
|
||||
32-bit integer argument. The list of intrinsic IDs defined as integer
|
||||
constants in ``llvm.core``. These are:
|
||||
|
||||
{% include intrinsics.csv %}
|
||||
|
||||
There are also target-specific intrinsics (which correspond to that
|
||||
target's CPU instructions) available, but are omitted here for brevity.
|
||||
Full list can be seen from
|
||||
[*intrinsic\_ids.py](https://github.com/numba/llvmpy/blob/master/llvm/*\ intrinsic\_ids.py).
|
||||
See the `LLVM Language
|
||||
Reference <http://www.llvm.org/docs/LangRef.html>`_ for more information
|
||||
on the intrinsics, and the
|
||||
`test <https://github.com/numba/llvmpy/blob/master/test/intrinsic.py>`_
|
||||
directory in the source distribution for more examples. The intrinsic ID
|
||||
can be retrieved from a function object with the read-only property
|
||||
``intrinsic_id``.
|
||||
|
||||
**Auto-generation of Intrinsic IDs**
|
||||
|
||||
A script (tool/intrgen.py in source tree) generates the intrinsic
|
||||
IDs automatically. This is necessary when compiling llvmpy with a
|
||||
different version of LLVM.
|
||||
|
||||
Calling Convention # {#callconv}
|
||||
================================
|
||||
|
||||
The function's calling convention can be set using the
|
||||
``calling_convention`` property. The following (integer) constants
|
||||
defined in ``llvm.core`` can be used as values:
|
||||
|
||||
Value \| Equivalent LLVM Assembly Keyword \|
|
||||
------\|----------------------------------\| ``CC_C`` \| ``ccc`` \|
|
||||
``CC_FASTCALL`` \| ``fastcc`` \| ``CC_COLDCALL`` \| ``coldcc`` \|
|
||||
``CC_X86_STDCALL`` \| ``x86_stdcallcc`` \| ``CC_X86_FASTCALL`` \|
|
||||
``x86_fastcallcc`` \|
|
||||
|
||||
See the `LLVM docs <http://www.llvm.org/docs/LangRef.html#callingconv>`_
|
||||
for more information on each. Backend-specific numbered conventions can
|
||||
be directly passed as integers.
|
||||
|
||||
An arbitrary string identifying which garbage collector to use can be
|
||||
set or got with the property ``collector``.
|
||||
|
||||
The value objects corresponding to the arguments of a function can be
|
||||
got using the read-only property ``args``. These can be iterated over,
|
||||
and also be indexed via integers. An example:
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
# list all argument names and types for arg in
|
||||
fn.args: print arg.name, "of type", arg.type
|
||||
|
||||
# change the name of the first argument
|
||||
fn.args[0].name = "objptr"
|
||||
|
||||
|
||||
|
||||
Basic blocks (see later) are contained within functions. When newly
|
||||
created, a function has no basic blocks. They have to be added
|
||||
explicitly, using the ``append_basic_block`` method, which adds a new,
|
||||
empty basic block as the last one in the function. The first basic block
|
||||
of the function can be retrieved using the ``get_entry_basic_block``
|
||||
method. The existing basic blocks can be enumerated by iterating over
|
||||
using the read-only property ``basic_blocks``. The number of basic
|
||||
blocks can be got via ``basic_block_count`` method. Note that
|
||||
``get_entry_basic_block`` is slightly faster than ``basic_blocks[0]``
|
||||
and so is ``basic_block_count``, over ``len(f.basic_blocks)``.
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
# add a basic block b1 =
|
||||
fn.append_basic_block("entry")
|
||||
|
||||
# get the first one
|
||||
b2 = fn.get_entry_basic_block() b2 = fn.basic_mdblocks[0] # slower
|
||||
than previous method
|
||||
|
||||
# print names of all basic blocks
|
||||
for b in fn.basic_blocks: print b.name
|
||||
|
||||
# get number of basic blocks
|
||||
n = fn.basic_block_count n = len(fn.basic_blocks) # slower than
|
||||
previous method
|
||||
115
docs/source/doc/getting_started.rst
Normal file
115
docs/source/doc/getting_started.rst
Normal file
|
|
@ -0,0 +1,115 @@
|
|||
|
||||
Introduction
|
||||
============
|
||||
|
||||
`LLVM <http://www.llvm.org/>`_ (Low-Level Virtual Machine) provides
|
||||
enough infrastructure to use it as the backend for your compiled, or
|
||||
JIT-compiled language. It provides extensive optimization support, and
|
||||
static and dynamic (JIT) backends for many platforms. See the website at
|
||||
http://www.llvm.org/ to discover more.
|
||||
|
||||
Python bindings for LLVM provides a gentler learning curve for working
|
||||
with the LLVM APIs. It should also be easier to create working
|
||||
prototypes and experimental languages using this medium.
|
||||
|
||||
Together with `clang <http://clang.llvm.org/>`_ or
|
||||
`llvm-gcc <http://llvm.org/releases/2.7/docs/CommandGuide/html/llvmgcc.html>`_
|
||||
it also a provides a means to quickly instrument C and C++ sources. For e.g.,
|
||||
llvm-gcc can be used to generate the LLVM assembly for a given C source file,
|
||||
which can then be loaded and manipulated (adding profiling code to every function,
|
||||
say) using a llvmpy based Python script.
|
||||
|
||||
License
|
||||
-------
|
||||
|
||||
Both LLVM and llvmpy are distributed under (different) permissive open
|
||||
source licenses. llvmpy uses the `new BSD
|
||||
license <http://opensource.org/licenses/bsd-license.php>`_. More
|
||||
information is available
|
||||
`here <https://github.com/llvmpy/llvmpy/blob/master/LICENSE>`_.
|
||||
|
||||
Platforms
|
||||
---------
|
||||
|
||||
llvmpy has been built/tested/reported to work on various GNU/Linux
|
||||
flavours, BSD, Mac OS X; on i386 and amd64 architectures. Windows is not
|
||||
supported, for a variety of reasons.
|
||||
|
||||
Versions
|
||||
--------
|
||||
|
||||
llvmpy 0.11.2 uses LLVM 3.2 (or at least 3.1). It may not work with
|
||||
previous versions.
|
||||
|
||||
llvmpy has been built and tested with Python 2.7 and 3.2. It should work with
|
||||
earlier versions.
|
||||
|
||||
|
||||
Installation
|
||||
============
|
||||
|
||||
The Git repo of llvmpy is at https://github.com/llvmpy/llvmpy.git.
|
||||
You'll need to build and install it before it can be used. At least the
|
||||
following will be required for this:
|
||||
|
||||
- C and C++ compilers (gcc/g++)
|
||||
- Python itself
|
||||
- Python development files (headers and libraries)
|
||||
- LLVM, either installed or built
|
||||
|
||||
On debian-based systems, the first three can be installed with the
|
||||
command ``sudo apt-get install gcc g++ python python-dev``. Ensure that
|
||||
your distro's repository has the appropriate version of LLVM!
|
||||
|
||||
It does not matter which compiler LLVM itself was built with (``g++``,
|
||||
``llvm-g++`` or any other); llvmpy can be built with any compiler. It
|
||||
has been tried only with gcc/g++ though.
|
||||
|
||||
llvm-config
|
||||
-----------
|
||||
|
||||
In order to build llvmpy, it's build script needs to know from where it
|
||||
can invoke the llvm helper program, ``llvm-config``. If you've installed
|
||||
LLVM, then this will be available in your ``PATH``, and nothing further
|
||||
needs to be done. If you've built LLVM yourself, or for any reason
|
||||
``llvm-config`` is not in your ``PATH``, you'll need to pass the full
|
||||
path of ``llvm-config`` to the build script.
|
||||
|
||||
You'll need to be 'root' to install llvmpy. Remember that your ``PATH``
|
||||
is different from that of 'root', so even if ``llvm-config`` is in your
|
||||
``PATH``, it may not be available when you do ``sudo``.
|
||||
|
||||
Steps
|
||||
-----
|
||||
|
||||
1. Get and extract LLVM 3.2 source tarball from
|
||||
`llvm.org <http://llvm.org/releases/download.html#3.2>`_. Then, ``cd`` into
|
||||
the extracted directory.
|
||||
|
||||
2. Run ``./configure --enable-optimized --prefix=LLVM_INSTALL_PATH``.
|
||||
|
||||
**Note**: Without the ``--enable-optimized`` flag, debug build will be
|
||||
selected. Unless you are developing LLVM or llvmpy, it is recommended
|
||||
that the flag is used to reduce build time and binary size.
|
||||
|
||||
**Note**: Use prefix to select the installation path. It is recommended
|
||||
to separate your custom build from the default system package. Please
|
||||
replace ``LLVM_INSTALL_PATH`` with your own path.
|
||||
|
||||
3. Run ``REQUIRES_RTTI=1 make`` to build.
|
||||
|
||||
**Note**: With LLVM 3.2, the default build configuration has C++ RTTI
|
||||
disabled. However, llvmpy requires RTTI.
|
||||
|
||||
4. Get llvm-py and install it::
|
||||
|
||||
$ git clone git@github.com:llvmpy/llvmpy.git
|
||||
$ cd llvmpy
|
||||
$ LLVM_CONFIG_PATH=LLVM_INSTALL_PATH/bin/llvm-config python setup.py install
|
||||
|
||||
Run the tests::
|
||||
|
||||
$ python -c "import llvm; llvm.test()"
|
||||
|
||||
5. See documentation at 'http://www.llvmpy.org' and examples
|
||||
under 'test'.
|
||||
312
docs/source/doc/kaleidoscope/PythonLangImpl1.rst
Normal file
312
docs/source/doc/kaleidoscope/PythonLangImpl1.rst
Normal file
|
|
@ -0,0 +1,312 @@
|
|||
*************************************************
|
||||
Chapter 1: Tutorial Introduction and the Lexer
|
||||
*************************************************
|
||||
|
||||
Written by `Chris Lattner <mailto:sabre@nondot.org>`_ and `Max
|
||||
Shawabkeh <http://max99x.com>`_
|
||||
|
||||
Introduction
|
||||
============
|
||||
|
||||
Welcome to the "Implementing a language with LLVM" tutorial. This
|
||||
tutorial runs through the implementation of a simple language, showing
|
||||
how fun and easy it can be. This tutorial will get you up and started as
|
||||
well as help to build a framework you can extend to other languages. The
|
||||
code in this tutorial can also be used as a playground to hack on other
|
||||
LLVM specific things.
|
||||
|
||||
It is useful to point out ahead of time that this tutorial is really
|
||||
about teaching compiler techniques and LLVM specifically, *not* about
|
||||
teaching modern and sane software engineering principles. In practice,
|
||||
this means that we'll take a number of shortcuts to simplify the
|
||||
exposition. If you dig in and use the code as a basis for future
|
||||
projects, fixing its deficiencies shouldn't be hard.
|
||||
|
||||
We've tried to put this tutorial together in a way that makes chapters
|
||||
easy to skip over if you are already familiar with or are uninterested
|
||||
in the various pieces. The structure of the tutorial is:
|
||||
|
||||
- :ref:`Chapter 1 <language>`: **Introduction to the Kaleidoscope
|
||||
language, and the definition of its Lexer** -- This shows where we
|
||||
are going and the basic functionality that we want it to do. In order
|
||||
to make this tutorial maximally understandable and hackable, we
|
||||
choose to implement everything in Python instead of using lexer and
|
||||
parser generators. LLVM obviously works just fine with such tools,
|
||||
feel free to use one if you prefer.
|
||||
|
||||
- `Chapter 2 <PythonLangImpl2.html>`_: **Implementing a Parser and
|
||||
AST** -- With the lexer in place, we can talk about parsing
|
||||
techniques and basic AST construction. This tutorial describes
|
||||
recursive descent parsing and operator precedence parsing. Nothing in
|
||||
Chapters 1 or 2 is LLVM-specific, the code doesn't even import the
|
||||
LLVM modules at this point. :)
|
||||
|
||||
- `Chapter 3 <PythonLangImpl3.html>`_: **Code generation to LLVM IR**
|
||||
-- With the AST ready, we can show off how easy generation of LLVM IR
|
||||
really is.
|
||||
|
||||
- `Chapter 4 <PythonLangImpl4.html>`_: **Adding JIT and Optimizer
|
||||
support** -- Because a lot of people are interested in using LLVM as
|
||||
a JIT, we'll dive right into it and show you the 3 lines it takes to
|
||||
add JIT support. LLVM is also useful in many other ways, but this is
|
||||
one simple and "sexy" way to shows off its power. :)
|
||||
|
||||
- `Chapter 5 <PythonLangImpl5.html>`_: **Extending the Language:
|
||||
Control Flow** -- With the language up and running, we show how to
|
||||
extend it with control flow operations (if/then/else and a 'for'
|
||||
loop). This gives us a chance to talk about simple SSA construction
|
||||
and control flow.
|
||||
|
||||
- `Chapter 6 <PythonLangImpl6.html>`_: **Extending the Language:
|
||||
User-defined Operators** -- This is a silly but fun chapter that
|
||||
talks about extending the language to let the user program define
|
||||
their own arbitrary unary and binary operators (with assignable
|
||||
precedence!). This lets us build a significant piece of the
|
||||
"language" as library routines.
|
||||
|
||||
- `Chapter 7 <PythonLangImpl7.html>`_: **Extending the Language:
|
||||
Mutable Variables** -- This chapter talks about adding user-defined
|
||||
local variables along with an assignment operator. The interesting
|
||||
part about this is how easy and trivial it is to construct SSA form
|
||||
in LLVM: no, LLVM does *not* require your front-end to construct SSA
|
||||
form!
|
||||
|
||||
- `Chapter 8 <PythonLangImpl8.html>`_: **Conclusion and other useful
|
||||
LLVM tidbits** -- This chapter wraps up the series by talking about
|
||||
potential ways to extend the language, but also includes a bunch of
|
||||
pointers to info about "special topics" like adding garbage
|
||||
collection support, exceptions, debugging, support for "spaghetti
|
||||
stacks", and a bunch of other tips and tricks.
|
||||
|
||||
By the end of the tutorial, we'll have written a bit less than 540 lines
|
||||
of non-comment, non-blank, lines of code. With this small amount of
|
||||
code, we'll have built up a very reasonable compiler for a non-trivial
|
||||
language including a hand-written lexer, parser, AST, as well as code
|
||||
generation support with a JIT compiler. While other systems may have
|
||||
interesting "hello world" tutorials, I think the breadth of this
|
||||
tutorial is a great testament to the strengths of LLVM and why you
|
||||
should consider it if you're interested in language or compiler design.
|
||||
|
||||
A note about this tutorial: we expect you to extend the language and
|
||||
play with it on your own. Take the code and go crazy hacking away at it,
|
||||
compilers don't need to be scary creatures - it can be a lot of fun to
|
||||
play with languages!
|
||||
|
||||
--------------
|
||||
|
||||
.. _language:
|
||||
|
||||
The Basic Language
|
||||
================================
|
||||
|
||||
This tutorial will be illustrated with a toy language that we'll call
|
||||
"`Kaleidoscope <http://en.wikipedia.org/wiki/Kaleidoscope>`_\ " (derived
|
||||
from "meaning beautiful, form, and view"). Kaleidoscope is a procedural
|
||||
language that allows you to define functions, use conditionals, math,
|
||||
etc. Over the course of the tutorial, we'll extend Kaleidoscope to
|
||||
support the if/then/else construct, a for loop, user defined operators,
|
||||
JIT compilation with a simple command line interface, etc.
|
||||
|
||||
Because we want to keep things simple, the only datatype in Kaleidoscope
|
||||
is a 64-bit floating point type. As such, all values are implicitly
|
||||
double precision and the language doesn't require type declarations.
|
||||
This gives the language a very nice and simple syntax. For example, the
|
||||
following simple example computes `Fibonacci
|
||||
numbers <http://en.wikipedia.org/wiki/Fibonacci_number>`_:
|
||||
|
||||
|
||||
.. code-block:: text
|
||||
|
||||
# Compute the x'th fibonacci number.
|
||||
def fib(x)
|
||||
if x < 3
|
||||
return 1
|
||||
else
|
||||
return fib(x-1)+fib(x-2)
|
||||
|
||||
# This expression will compute the 40th number.
|
||||
fib(40)
|
||||
|
||||
|
||||
|
||||
We also allow Kaleidoscope to call into standard library functions (the
|
||||
LLVM JIT makes this completely trivial). This means that you can use the
|
||||
'extern' keyword to define a function before you use it (this is also
|
||||
useful for mutually recursive functions). For example:
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
extern sin(arg);
|
||||
extern cos(arg);
|
||||
extern atan2(arg1 arg2);
|
||||
|
||||
atan2(sin(0.4), cos(42))
|
||||
|
||||
|
||||
|
||||
A more interesting example is included in Chapter 6 where we write a
|
||||
little Kaleidoscope application that
|
||||
`displays <PythonLangImpl6.html#example>`_ a Mandelbrot Set at various
|
||||
levels of magnification.
|
||||
|
||||
Lets dive into the implementation of this language!
|
||||
|
||||
--------------
|
||||
|
||||
The Lexer
|
||||
====================
|
||||
|
||||
When it comes to implementing a language, the first thing needed is the
|
||||
ability to process a text file and recognize what it says. The
|
||||
traditional way to do this is to use a
|
||||
`lexer <http://en.wikipedia.org/wiki/Lexical_analysis>`_ (aka
|
||||
'scanner') to break the input up into "tokens". Each token returned by
|
||||
the lexer includes a token type and potentially some metadata (e.g. the
|
||||
numeric value of a number). First, we define the possibilities:
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
# The lexer yields one of these types for each token.
|
||||
class EOFToken(object): pass
|
||||
|
||||
class DefToken(object): pass
|
||||
|
||||
class ExternToken(object): pass
|
||||
|
||||
class IdentifierToken(object):
|
||||
def __init__(self, name):
|
||||
self.name = name
|
||||
|
||||
class NumberToken(object):
|
||||
def __init__(self, value):
|
||||
self.value = value
|
||||
|
||||
class CharacterToken(object):
|
||||
def __init__(self, char):
|
||||
self.char = char
|
||||
def __eq__(self, other):
|
||||
return isinstance(other, CharacterToken) and self.char == other.char
|
||||
def __ne__(self, other):
|
||||
return not self == other
|
||||
|
||||
|
||||
Each token yielded by our lexer will be of one of the above types. For
|
||||
simple tokens that are always the same, like the "def" keyword, the
|
||||
lexer will yield ``DefToken()``. Identifiers, numbers and characters,
|
||||
on the other hand, have extra data, so when the lexer encounteres the
|
||||
number 123.45, it will emit it as ``NumberToken(123.45)``. An identifier
|
||||
``foo`` will be emitted as ``IdentifierToken('foo')``. And finally, an
|
||||
unknown character like '+' will be returned as ``CharacterToken('+')``.
|
||||
You may notice that we overload the equality and inequality operators
|
||||
for the characters; this will later simplify character comparisons in
|
||||
the parser code.
|
||||
|
||||
The actual implementation of the lexer is a single function called
|
||||
``Tokenize``, which takes a string and
|
||||
`yields <http://docs.python.org/reference/simple_stmts.html#the-yield-statement>`_
|
||||
tokens. For simplicity, we will use `regular
|
||||
expressions <http://docs.python.org/library/re.html>`_ to parse out the
|
||||
tokens. This is terribly inefficient, but perfectly sufficient for our
|
||||
needs.
|
||||
|
||||
First, we define the regular expressions for our tokens. Numbers and
|
||||
strings of digits, optionally followed by a period and another string of
|
||||
digits. Identifiers (and keywords) are alphanumeric string starting with
|
||||
a letter and comments are anything between a hash (``#``) and the end of
|
||||
the line.
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
import re
|
||||
|
||||
...
|
||||
|
||||
# Regular expressions that tokens and comments of our language.
|
||||
REGEX_NUMBER = re.compile('[0-9]+(?:.[0-9]+)?')
|
||||
REGEX_IDENTIFIER = re.compile('[a-zA-Z][a-zA-Z0-9]*')
|
||||
REGEX_COMMENT = re.compile('#.*')
|
||||
|
||||
|
||||
Next, let's start defining the ``Tokenize`` function itself. The first
|
||||
thing we need to do is set up a loop that scans the string, while
|
||||
ignoring whitespace between tokens:
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
def Tokenize(string):
|
||||
while string: # Skip whitespace.
|
||||
if string[0].isspace():
|
||||
string = string[1:]
|
||||
continue
|
||||
|
||||
|
||||
|
||||
|
||||
|
||||
Next we want to find out what the next token is. For this we run the
|
||||
regexes we defined above on the remainder of the string. To simplify the
|
||||
rest of the code, we run all three regexes each time. As mentioned
|
||||
above, inefficiencies are ignored for the purpose of this tutorial:
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
# Run regexes.
|
||||
comment_match = REGEX_COMMENT.match(string)
|
||||
number_match = REGEX_NUMBER.match(string)
|
||||
identifier_match = REGEX_IDENTIFIER.match(string)
|
||||
|
||||
|
||||
Now we check if any of the regexes matched. For comments, we simply
|
||||
ignore the captured match:
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
# Check if any of the regexes matched and yield
|
||||
# the appropriate result.
|
||||
if comment_match:
|
||||
comment = comment_match.group(0)
|
||||
string = string[len(comment):]
|
||||
|
||||
# For numbers, we yield the captured match, converted to a float and
|
||||
# tagged with the appropriate token type:
|
||||
|
||||
elif number_match:
|
||||
number = number_match.group(0)
|
||||
yield NumberToken(float(number))
|
||||
string = string[len(number):]
|
||||
|
||||
# The identifier case is a little more complex. We have to check for
|
||||
# keywords to decide whether we have captured an identifier or a keyword:
|
||||
|
||||
elif identifier_match:
|
||||
identifier = identifier_match.group(0)
|
||||
# Check if we matched a keyword.
|
||||
if identifier == 'def':
|
||||
yield DefToken()
|
||||
elif identifier == 'extern':
|
||||
yield ExternToken()
|
||||
else:
|
||||
yield IdentifierToken(identifier)
|
||||
string = string[len(identifier):]
|
||||
|
||||
|
||||
# Finally, if we haven't recognized a comment, a number of an identifier,
|
||||
# we yield the current character as an "unknown character" token. This is
|
||||
# used, for example, for operators like ``+`` or ``*``:
|
||||
|
||||
else: # Yield the unknown character.
|
||||
yield CharacterToken(string[0])
|
||||
string = string[1:]
|
||||
|
||||
|
||||
# Once we're done with the loop, we return a final end-of-file token:
|
||||
|
||||
|
||||
yield EOFToken()
|
||||
|
||||
1079
docs/source/doc/kaleidoscope/PythonLangImpl2.rst
Normal file
1079
docs/source/doc/kaleidoscope/PythonLangImpl2.rst
Normal file
File diff suppressed because it is too large
Load diff
1087
docs/source/doc/kaleidoscope/PythonLangImpl3.rst
Normal file
1087
docs/source/doc/kaleidoscope/PythonLangImpl3.rst
Normal file
File diff suppressed because it is too large
Load diff
936
docs/source/doc/kaleidoscope/PythonLangImpl4.rst
Normal file
936
docs/source/doc/kaleidoscope/PythonLangImpl4.rst
Normal file
|
|
@ -0,0 +1,936 @@
|
|||
*************************************************
|
||||
Chapter 4: Adding JIT and Optimizer Support
|
||||
*************************************************
|
||||
|
||||
Written by `Chris Lattner <mailto:sabre@nondot.org>`_ and `Max
|
||||
Shawabkeh <http://max99x.com>`_
|
||||
|
||||
Introduction
|
||||
=======================
|
||||
|
||||
Welcome to Chapter 4 of the `Implementing a language with
|
||||
LLVM <http://www.llvm.org/docs/tutorial/index.html>`_ tutorial. Chapters
|
||||
1-3 described the implementation of a simple language and added support
|
||||
for generating LLVM IR. This chapter describes two new techniques:
|
||||
adding optimizer support to your language, and adding JIT compiler
|
||||
support. These additions will demonstrate how to get nice, efficient
|
||||
code for the Kaleidoscope language.
|
||||
|
||||
--------------
|
||||
|
||||
Trivial Constant Folding
|
||||
==============================================
|
||||
|
||||
Our demonstration for Chapter 3 is elegant and easy to extend.
|
||||
Unfortunately, it does not produce wonderful code. The LLVM Builder,
|
||||
however, does give us obvious optimizations when compiling simple code:
|
||||
|
||||
|
||||
.. code-block:: bash
|
||||
|
||||
ready> def test(x) 1+2+x
|
||||
Read function definition:
|
||||
define double @test(double %x) {
|
||||
entry:
|
||||
%addtmp = fadd double 3.000000e+00, %x
|
||||
ret double %addtmp
|
||||
}
|
||||
|
||||
|
||||
|
||||
This code is not a literal transcription of the AST built by parsing the
|
||||
input. That would be:
|
||||
|
||||
|
||||
.. code-block:: bash
|
||||
|
||||
ready> def test(x) 1+2+x
|
||||
Read function definition:
|
||||
define double @test(double %x) {
|
||||
entry:
|
||||
%addtmp = fadd double 2.000000e+00, 1.000000e+00
|
||||
%addtmp1 = fadd double %addtmp, %x
|
||||
ret double %addtmp1
|
||||
}
|
||||
|
||||
|
||||
|
||||
Constant folding, as seen above, in particular, is a very common and
|
||||
very important optimization: so much so that many language implementors
|
||||
implement constant folding support in their AST representation.
|
||||
|
||||
With LLVM, you don't need this support in the AST. Since all calls to
|
||||
build LLVM IR go through the LLVM IR builder, the builder itself checked
|
||||
to see if there was a constant folding opportunity when you call it. If
|
||||
so, it just does the constant fold and return the constant instead of
|
||||
creating an instruction.
|
||||
|
||||
Well, that was easy :). In practice, we recommend always using
|
||||
``llvm.core.Builder`` when generating code like this. It has no
|
||||
"syntactic overhead" for its use (you don't have to uglify your compiler
|
||||
with constant checks everywhere) and it can dramatically reduce the
|
||||
amount of LLVM IR that is generated in some cases (particular for
|
||||
languages with a macro preprocessor or that use a lot of constants).
|
||||
|
||||
On the other hand, the ``Builder`` is limited by the fact that it does
|
||||
all of its analysis inline with the code as it is built. If you take a
|
||||
slightly more complex example:
|
||||
|
||||
|
||||
.. code-block:: bash
|
||||
|
||||
ready> def test(x) (1+2+x)*(x+(1+2))
|
||||
Read a function definition:
|
||||
define double @test(double %x) {
|
||||
entry:
|
||||
%addtmp = fadd double 3.000000e+00, %x ; <double> [#uses=1]
|
||||
%addtmp1 = fadd double %x, 3.000000e+00 ; <double> [#uses=1]
|
||||
%multmp = fmul double %addtmp, %addtmp1 ; <double> [#uses=1]
|
||||
ret double %multmp
|
||||
}
|
||||
|
||||
|
||||
|
||||
In this case, the LHS and RHS of the multiplication are the same value.
|
||||
We'd really like to see this generate"``tmp = x+3; result = tmp*tmp;``
|
||||
instead of computing ``x+3`` twice.
|
||||
|
||||
Unfortunately, no amount of local analysis will be able to detect and
|
||||
correct this. This requires two transformations: reassociation of
|
||||
expressions (to make the add's lexically identical) and Common
|
||||
Subexpression Elimination (CSE) to delete the redundant add instruction.
|
||||
Fortunately, LLVM provides a broad range of optimizations that you can
|
||||
use, in the form of "passes".
|
||||
|
||||
--------------
|
||||
|
||||
LLVM Optimization Passes
|
||||
=============================================
|
||||
|
||||
LLVM provides many optimization passes, which do many different sorts of
|
||||
things and have different tradeoffs. Unlike other systems, LLVM doesn't
|
||||
hold to the mistaken notion that one set of optimizations is right for
|
||||
all languages and for all situations. LLVM allows a compiler implementor
|
||||
to make complete decisions about what optimizations to use, in which
|
||||
order, and in what situation.
|
||||
|
||||
As a concrete example, LLVM supports both "whole module" passes, which
|
||||
look across as large of body of code as they can (often a whole file,
|
||||
but if run at link time, this can be a substantial portion of the whole
|
||||
program). It also supports and includes "per-function" passes which just
|
||||
operate on a single function at a time, without looking at other
|
||||
functions. For more information on passes and how they are run, see the
|
||||
`How to Write a Pass <http://www.llvm.org/docs/WritingAnLLVMPass.html>`_
|
||||
document and the `List of LLVM
|
||||
Passes <http://www.llvm.org/docs/Passes.html>`_.
|
||||
|
||||
For Kaleidoscope, we are currently generating functions on the fly, one
|
||||
at a time, as the user types them in. We aren't shooting for the
|
||||
ultimate optimization experience in this setting, but we also want to
|
||||
catch the easy and quick stuff where possible. As such, we will choose
|
||||
to run a few per-function optimizations as the user types the function
|
||||
in. If we wanted to make a "static Kaleidoscope compiler", we would use
|
||||
exactly the code we have now, except that we would defer running the
|
||||
optimizer until the entire file has been parsed.
|
||||
|
||||
In order to get per-function optimizations going, we need to set up a
|
||||
`FunctionPassManager <http://www.llvm.org/docs/WritingAnLLVMPass.html#passmanager>`_
|
||||
to hold and organize the LLVM optimizations that we want to run. Once we
|
||||
have that, we can add a set of optimizations to run. The code looks like
|
||||
this:
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
# The function optimization passes manager.
|
||||
g_llvm_pass_manager = FunctionPassManager.new(g_llvm_module)
|
||||
|
||||
# The LLVM execution engine.
|
||||
g_llvm_executor = ExecutionEngine.new(g_llvm_module)
|
||||
|
||||
...
|
||||
|
||||
def main():
|
||||
# Set up the optimizer pipeline. Start with registering info about how the
|
||||
# target lays out data structures.
|
||||
g_llvm_pass_manager.add(g_llvm_executor.target_data)
|
||||
# Do simple "peephole" optimizations and bit-twiddling optzns.
|
||||
g_llvm_pass_manager.add(PASS_INSTRUCTION_COMBINING)
|
||||
# Reassociate expressions.
|
||||
g_llvm_pass_manager.add(PASS_REASSOCIATE)
|
||||
# Eliminate Common SubExpressions.
|
||||
g_llvm_pass_manager.add(PASS_GVN)
|
||||
# Simplify the control flow graph (deleting unreachable blocks, etc).
|
||||
g_llvm_pass_manager.add(PASS_CFG_SIMPLIFICATION)
|
||||
|
||||
g_llvm_pass_manager.initialize()
|
||||
|
||||
|
||||
|
||||
This code defines a ``FunctionPassManager``, ``g_llvm_pass_manager``.
|
||||
Once it is set up, we use a series of "add" calls to add a bunch of LLVM
|
||||
passes. The first pass is basically boilerplate, it adds a pass so that
|
||||
later optimizations know how the data structures in the program are laid
|
||||
out. (The "``g_llvm_executor``\ " variable is related to the JIT, which
|
||||
we will get to in the next section.) In this case, we choose to add 4
|
||||
optimization passes. The passes we chose here are a pretty standard set
|
||||
of "cleanup" optimizations that are useful for a wide variety of code. I
|
||||
won't delve into what they do but, believe me, they are a good starting
|
||||
place :).
|
||||
|
||||
Once the pass manager is set up, we need to make use of it. We do this
|
||||
by running it after our newly created function is constructed (in
|
||||
``FunctionNode.CodeGen``), but before it is returned to the client:
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
return_value = self.body.CodeGen()
|
||||
g_llvm_builder.ret(return_value)
|
||||
|
||||
# Validate the generated code, checking for consistency.
|
||||
function.verify()
|
||||
|
||||
# Optimize the function.
|
||||
g_llvm_pass_manager.run(function)
|
||||
|
||||
|
||||
|
||||
|
||||
|
||||
As you can see, this is pretty straightforward. The
|
||||
``FunctionPassManager`` optimizes and updates the LLVM Function in
|
||||
place, improving (hopefully) its body. With this in place, we can try
|
||||
our test above again:
|
||||
|
||||
|
||||
.. code-block:: bash
|
||||
|
||||
ready> def test(x) (1+2+x)*(x+(1+2))
|
||||
Read a function definition:
|
||||
define double @test(double %x) {
|
||||
entry:
|
||||
%addtmp = fadd double %x, 3.000000e+00 ; <double> [#uses=2]
|
||||
%multmp = fmul double %addtmp, %addtmp ; <double> [#uses=1]
|
||||
ret double %multmp
|
||||
}
|
||||
|
||||
|
||||
|
||||
As expected, we now get our nicely optimized code, saving a floating
|
||||
point add instruction from every execution of this function.
|
||||
|
||||
LLVM provides a wide variety of optimizations that can be used in
|
||||
certain circumstances. Some `documentation about the various
|
||||
passes <http://www.llvm.org/docs/Passes.html>`_ is available, but it
|
||||
isn't very complete. Another good source of ideas can come from looking
|
||||
at the passes that ``llvm-gcc`` or ``llvm-ld`` run to get started. The
|
||||
``opt`` tool allows you to experiment with passes from the command line,
|
||||
so you can see if they do anything.
|
||||
|
||||
Now that we have reasonable code coming out of our front-end, lets talk
|
||||
about executing it!
|
||||
|
||||
--------------
|
||||
|
||||
Adding a JIT Compiler
|
||||
==============================
|
||||
|
||||
Code that is available in LLVM IR can have a wide variety of tools
|
||||
applied to it. For example, you can run optimizations on it (as we did
|
||||
above), you can dump it out in textual or binary forms, you can compile
|
||||
the code to an assembly file (.s) for some target, or you can JIT
|
||||
compile it. The nice thing about the LLVM IR representation is that it
|
||||
is the "common currency" between many different parts of the compiler.
|
||||
|
||||
In this section, we'll add JIT compiler support to our interpreter. The
|
||||
basic idea that we want for Kaleidoscope is to have the user enter
|
||||
function bodies as they do now, but immediately evaluate the top-level
|
||||
expressions they type in. For example, if they type in "1 + 2", we
|
||||
should evaluate and print out 3. If they define a function, they should
|
||||
be able to call it from the command line.
|
||||
|
||||
In order to do this, we first declare and initialize the JIT. This is
|
||||
done by adding and initializing a global variable:
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
# The LLVM execution engine.
|
||||
g_llvm_executor = ExecutionEngine.new(g_llvm_module)
|
||||
|
||||
|
||||
|
||||
This creates an abstract "Execution Engine" which can be either a JIT
|
||||
compiler or the LLVM interpreter. LLVM will automatically pick a JIT
|
||||
compiler for you if one is available for your platform, otherwise it
|
||||
will fall back to the interpreter.
|
||||
|
||||
Once the ``ExecutionEngine`` is created, the JIT is ready to be used. We
|
||||
can use the ``run_function`` method of the execution engine to execute a
|
||||
compiled function and get its return value. In our case, this means that
|
||||
we can change the code that parses a top-level expression to look like
|
||||
this:
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
def HandleTopLevelExpression(self):
|
||||
try:
|
||||
function = self.ParseTopLevelExpr().CodeGen()
|
||||
result = g_llvm_executor.run_function(function, [])
|
||||
print 'Evaluated to:', result.as_real(Type.double())
|
||||
except Exception, e:
|
||||
print 'Error:', e
|
||||
try:
|
||||
self.Next() # Skip for error recovery.
|
||||
except:
|
||||
pass
|
||||
|
||||
Recall that we compile top-level expressions into a self-contained LLVM
|
||||
function that takes no arguments and returns the computed double.
|
||||
|
||||
With just these two changes, lets see how Kaleidoscope works now!
|
||||
|
||||
.. code-block:: bash
|
||||
|
||||
ready> 4+5
|
||||
Read a top level expression:
|
||||
define double @0() {
|
||||
entry:
|
||||
ret double 9.000000e+00
|
||||
}
|
||||
|
||||
Evaluated to: 9.0
|
||||
|
||||
|
||||
|
||||
Well this looks like it is basically working. The dump of the function
|
||||
shows the "no argument function that always returns double" that we
|
||||
synthesize for each top-level expression that is typed in. This
|
||||
demonstrates very basic functionality, but can we do more?
|
||||
|
||||
|
||||
.. code-block:: bash
|
||||
|
||||
ready> def testfunc(x y) x + y*2
|
||||
Read a function definition:
|
||||
define double @testfunc(double %x, double %y) {
|
||||
entry:
|
||||
%multmp = fmul double %y, 2.000000e+00 ; <double> [#uses=1]
|
||||
%addtmp = fadd double %multmp, %x ; <double> [#uses=1]
|
||||
ret double %addtmp
|
||||
}
|
||||
|
||||
ready> testfunc(4, 10)
|
||||
Read a top level expression:
|
||||
define double @0() {
|
||||
entry:
|
||||
%calltmp = call double @testfunc(double 4.000000e+00, double 1.000000e+01) ; <double> [#uses=1]
|
||||
ret double %calltmp
|
||||
}
|
||||
|
||||
*Evaluated to: 24.0*
|
||||
|
||||
|
||||
|
||||
This illustrates that we can now call user code, but there is something
|
||||
a bit subtle going on here. Note that we only invoke the JIT on the
|
||||
anonymous functions that *call testfunc*, but we never invoked it on
|
||||
*testfunc* itself. What actually happened here is that the JIT scanned
|
||||
for all non-JIT'd functions transitively called from the anonymous
|
||||
function and compiled all of them before returning from
|
||||
``run_function()``.
|
||||
|
||||
The JIT provides a number of other more advanced interfaces for things
|
||||
like freeing allocated machine code, rejit'ing functions to update them,
|
||||
etc. However, even with this simple code, we get some surprisingly
|
||||
powerful capabilities - check this out (I removed the dump of the
|
||||
anonymous functions, you should get the idea by now :) :
|
||||
|
||||
|
||||
.. code-block:: bash
|
||||
|
||||
ready> extern sin(x)
|
||||
Read an extern:
|
||||
declare double @sin(double)
|
||||
|
||||
ready> extern cos(x)
|
||||
Read an extern:
|
||||
declare double @cos(double)
|
||||
|
||||
ready> sin(1.0)
|
||||
*Evaluated to: 0.841470984808*
|
||||
|
||||
ready> def foo(x) sin(x) *sin(x) + cos(x)* cos(x)
|
||||
Read a function definition:
|
||||
define double @foo(double %x) {
|
||||
entry:
|
||||
%calltmp = call double @sin(double %x) ; <double> [#uses=1]
|
||||
%calltmp1 = call double @sin(double %x) ; <double> [#uses=1]
|
||||
%multmp = fmul double %calltmp, %calltmp1 ; <double> [#uses=1]
|
||||
%calltmp2 = call double @cos(double %x) ; <double> [#uses=1]
|
||||
%calltmp3 = call double @cos(double %x) ; <double> [#uses=1]
|
||||
%multmp4 = fmul double %calltmp2, %calltmp3 ; <double> [#uses=1]
|
||||
%addtmp = fadd double %multmp, %multmp4 ; <double> [#uses=1]
|
||||
ret double %addtmp
|
||||
}
|
||||
|
||||
ready> foo(4.0)
|
||||
*Evaluated to: 1.000000*
|
||||
|
||||
|
||||
|
||||
Whoa, how does the JIT know about sin and cos? The answer is
|
||||
surprisingly simple: in this example, the JIT started execution of a
|
||||
function and got to a function call. It realized that the function was
|
||||
not yet JIT compiled and invoked the standard set of routines to resolve
|
||||
the function. In this case, there is no body defined for the function,
|
||||
so the JIT ended up calling ``dlsym("sin")`` on the Python process that
|
||||
is hosting our Kaleidoscope prompt. Since ``sin`` is defined within the
|
||||
JIT's address space, it simply patches up calls in the module to call
|
||||
the libm version of ``sin`` directly.
|
||||
|
||||
One interesting application of this is that we can now extend the
|
||||
language by writing arbitrary C++ code to implement operations. For
|
||||
example, we can create a C file with the following simple function:
|
||||
|
||||
|
||||
.. code-block:: c
|
||||
|
||||
#include <stdio.h>
|
||||
|
||||
double putchard(double x) {
|
||||
putchar((char)x); return 0;
|
||||
}
|
||||
|
||||
We can then compile this into a shared library with GCC::
|
||||
|
||||
gcc -shared -fPIC -o putchard.so putchard.c
|
||||
|
||||
|
||||
Now we can load this library into the Python process using
|
||||
``llvm.core.load_library_permanently`` and access it from Kaleidoscope
|
||||
to produce simple output to the console::
|
||||
|
||||
>>> import llvm.core
|
||||
>>> llvm.core.load_library_permanently('/home/max/llvmpy-tutorial/putchard.so')
|
||||
>>> import kaleidoscope
|
||||
>>> kaleidoscope.main()
|
||||
ready> extern putchard(x)
|
||||
Read an extern:
|
||||
declare double @putchard(double)
|
||||
|
||||
ready> putchard(65) + putchard(66) + putchard(67) + putchard(10)
|
||||
*ABC*
|
||||
Evaluated to: 0.0
|
||||
|
||||
|
||||
|
||||
Similar code could be used to implement file I/O, console input, and
|
||||
many other capabilities in Kaleidoscope.
|
||||
|
||||
This completes the JIT and optimizer chapter of the Kaleidoscope
|
||||
tutorial. At this point, we can compile a non-Turing-complete
|
||||
programming language, optimize and JIT compile it in a user-driven way.
|
||||
Next up we'll look into `extending the language with control flow
|
||||
constructs <PythonLangImpl5.html>`_, tackling some interesting LLVM IR
|
||||
issues along the way.
|
||||
|
||||
--------------
|
||||
|
||||
Full Code Listing
|
||||
===========================
|
||||
|
||||
Here is the complete code listing for our running example, enhanced with
|
||||
the LLVM JIT and optimizer:
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
#!/usr/bin/env python
|
||||
|
||||
import re
|
||||
from llvm.core import Module, Constant, Type, Function, Builder, FCMP_ULT
|
||||
from llvm.ee import ExecutionEngine, TargetData
|
||||
from llvm.passes import FunctionPassManager
|
||||
from llvm.passes import (PASS_INSTRUCTION_COMBINING,
|
||||
PASS_REASSOCIATE,
|
||||
PASS_GVN,
|
||||
PASS_CFG_SIMPLIFICATION)
|
||||
|
||||
Globals
|
||||
-------
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
# The LLVM module, which holds all the IR code.
|
||||
g_llvm_module = Module.new('my cool jit')
|
||||
|
||||
# The LLVM instruction builder. Created whenever a new function is entered.
|
||||
g_llvm_builder = None
|
||||
|
||||
# A dictionary that keeps track of which values are defined in the current scope
|
||||
# and what their LLVM representation is.
|
||||
g_named_values = {}
|
||||
|
||||
# The function optimization passes manager.
|
||||
g_llvm_pass_manager = FunctionPassManager.new(g_llvm_module)
|
||||
|
||||
# The LLVM execution engine.
|
||||
g_llvm_executor = ExecutionEngine.new(g_llvm_module)
|
||||
|
||||
Lexer
|
||||
-----
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
# The lexer yields one of these types for each token.
|
||||
class EOFToken(object):
|
||||
pass
|
||||
|
||||
class DefToken(object):
|
||||
pass
|
||||
|
||||
class ExternToken(object):
|
||||
pass
|
||||
|
||||
class IdentifierToken(object):
|
||||
def __init__(self, name):
|
||||
self.name = name
|
||||
|
||||
class NumberToken(object):
|
||||
def __init__(self, value):
|
||||
self.value = value
|
||||
|
||||
class CharacterToken(object):
|
||||
def __init__(self, char):
|
||||
self.char = char
|
||||
def __eq__(self, other):
|
||||
return isinstance(other, CharacterToken) and self.char == other.char
|
||||
def __ne__(self, other):
|
||||
return not self == other
|
||||
|
||||
# Regular expressions that tokens and comments of our language.
|
||||
REGEX_NUMBER = re.compile('[0-9]+(?:\.[0-9]+)?')
|
||||
REGEX_IDENTIFIER = re.compile('[a-zA-Z][a-zA-Z0-9]*')
|
||||
REGEX_COMMENT = re.compile('#.*')
|
||||
|
||||
def Tokenize(string):
|
||||
while string:
|
||||
# Skip whitespace.
|
||||
if string[0].isspace():
|
||||
string = string[1:]
|
||||
continue
|
||||
|
||||
# Run regexes.
|
||||
comment_match = REGEX_COMMENT.match(string)
|
||||
number_match = REGEX_NUMBER.match(string)
|
||||
identifier_match = REGEX_IDENTIFIER.match(string)
|
||||
|
||||
# Check if any of the regexes matched and yield the appropriate result.
|
||||
if comment_match:
|
||||
comment = comment_match.group(0)
|
||||
string = string[len(comment):]
|
||||
elif number_match:
|
||||
number = number_match.group(0)
|
||||
yield NumberToken(float(number))
|
||||
string = string[len(number):]
|
||||
elif identifier_match:
|
||||
identifier = identifier_match.group(0)
|
||||
# Check if we matched a keyword.
|
||||
if identifier == 'def':
|
||||
yield DefToken()
|
||||
elif identifier == 'extern':
|
||||
yield ExternToken()
|
||||
else:
|
||||
yield IdentifierToken(identifier)
|
||||
string = string[len(identifier):]
|
||||
else:
|
||||
# Yield the ASCII value of the unknown character.
|
||||
yield CharacterToken(string[0])
|
||||
string = string[1:]
|
||||
|
||||
yield EOFToken()
|
||||
|
||||
Abstract Syntax Tree (aka Parse Tree)
|
||||
-------------------------------------
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
# Base class for all expression nodes.
|
||||
class ExpressionNode(object):
|
||||
pass
|
||||
|
||||
# Expression class for numeric literals like "1.0".
|
||||
class NumberExpressionNode(ExpressionNode):
|
||||
|
||||
def __init__(self, value):
|
||||
self.value = value
|
||||
|
||||
def CodeGen(self):
|
||||
return Constant.real(Type.double(), self.value)
|
||||
|
||||
# Expression class for referencing a variable, like "a".
|
||||
class VariableExpressionNode(ExpressionNode):
|
||||
|
||||
def __init__(self, name):
|
||||
self.name = name
|
||||
|
||||
def CodeGen(self):
|
||||
if self.name in g_named_values:
|
||||
return g_named_values[self.name]
|
||||
else:
|
||||
raise RuntimeError('Unknown variable name: ' + self.name)
|
||||
|
||||
# Expression class for a binary operator.
|
||||
class BinaryOperatorExpressionNode(ExpressionNode):
|
||||
|
||||
def __init__(self, operator, left, right):
|
||||
self.operator = operator
|
||||
self.left = left
|
||||
self.right = right
|
||||
|
||||
def CodeGen(self):
|
||||
left = self.left.CodeGen()
|
||||
right = self.right.CodeGen()
|
||||
|
||||
if self.operator == '+':
|
||||
return g_llvm_builder.fadd(left, right, 'addtmp')
|
||||
elif self.operator == '-':
|
||||
return g_llvm_builder.fsub(left, right, 'subtmp')
|
||||
elif self.operator == '*':
|
||||
return g_llvm_builder.fmul(left, right, 'multmp')
|
||||
elif self.operator == '<':
|
||||
result = g_llvm_builder.fcmp(FCMP_ULT, left, right, 'cmptmp')
|
||||
# Convert bool 0 or 1 to double 0.0 or 1.0.
|
||||
return g_llvm_builder.uitofp(result, Type.double(), 'booltmp')
|
||||
else:
|
||||
raise RuntimeError('Unknown binary operator.')
|
||||
|
||||
# Expression class for function calls.
|
||||
class CallExpressionNode(ExpressionNode):
|
||||
|
||||
def __init__(self, callee, args):
|
||||
self.callee = callee
|
||||
self.args = args
|
||||
|
||||
def CodeGen(self):
|
||||
# Look up the name in the global module table.
|
||||
callee = g_llvm_module.get_function_named(self.callee)
|
||||
|
||||
# Check for argument mismatch error.
|
||||
if len(callee.args) != len(self.args):
|
||||
raise RuntimeError('Incorrect number of arguments passed.')
|
||||
|
||||
arg_values = [i.CodeGen() for i in self.args]
|
||||
|
||||
return g_llvm_builder.call(callee, arg_values, 'calltmp')
|
||||
|
||||
# This class represents the "prototype" for a function, which captures its name,
|
||||
# and its argument names (thus implicitly the number of arguments the function
|
||||
# takes).
|
||||
class PrototypeNode(object):
|
||||
|
||||
def __init__(self, name, args):
|
||||
self.name = name
|
||||
self.args = args
|
||||
|
||||
def CodeGen(self):
|
||||
# Make the function type, eg. double(double,double).
|
||||
funct_type = Type.function(
|
||||
Type.double(), [Type.double()] * len(self.args), False)
|
||||
|
||||
function = Function.new(g_llvm_module, funct_type, self.name)
|
||||
|
||||
# If the name conflicted, there was already something with the same name.
|
||||
# If it has a body, don't allow redefinition or reextern.
|
||||
if function.name != self.name:
|
||||
function.delete()
|
||||
function = g_llvm_module.get_function_named(self.name)
|
||||
|
||||
# If the function already has a body, reject this.
|
||||
if not function.is_declaration:
|
||||
raise RuntimeError('Redefinition of function.')
|
||||
|
||||
# If F took a different number of args, reject.
|
||||
if len(callee.args) != len(self.args):
|
||||
raise RuntimeError('Redeclaration of a function with different number '
|
||||
'of args.')
|
||||
|
||||
# Set names for all arguments and add them to the variables symbol table.
|
||||
for arg, arg_name in zip(function.args, self.args):
|
||||
arg.name = arg_name
|
||||
# Add arguments to variable symbol table.
|
||||
g_named_values[arg_name] = arg
|
||||
|
||||
return function
|
||||
|
||||
# This class represents a function definition itself.
|
||||
class FunctionNode(object):
|
||||
|
||||
def __init__(self, prototype, body):
|
||||
self.prototype = prototype
|
||||
self.body = body
|
||||
|
||||
def CodeGen(self):
|
||||
# Clear scope.
|
||||
g_named_values.clear()
|
||||
|
||||
# Create a function object.
|
||||
function = self.prototype.CodeGen()
|
||||
|
||||
# Create a new basic block to start insertion into.
|
||||
block = function.append_basic_block('entry')
|
||||
global g_llvm_builder
|
||||
g_llvm_builder = Builder.new(block)
|
||||
|
||||
# Finish off the function.
|
||||
try:
|
||||
return_value = self.body.CodeGen()
|
||||
g_llvm_builder.ret(return_value)
|
||||
|
||||
# Validate the generated code, checking for consistency.
|
||||
function.verify()
|
||||
|
||||
# Optimize the function.
|
||||
g_llvm_pass_manager.run(function)
|
||||
except:
|
||||
function.delete()
|
||||
raise
|
||||
|
||||
return function
|
||||
|
||||
Parser
|
||||
------
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
class Parser(object):
|
||||
|
||||
def __init__(self, tokens, binop_precedence):
|
||||
self.tokens = tokens
|
||||
self.binop_precedence = binop_precedence
|
||||
self.Next()
|
||||
|
||||
# Provide a simple token buffer. Parser.current is the current token the
|
||||
# parser is looking at. Parser.Next() reads another token from the lexer and
|
||||
# updates Parser.current with its results.
|
||||
def Next(self):
|
||||
self.current = self.tokens.next()
|
||||
|
||||
# Gets the precedence of the current token, or -1 if the token is not a
|
||||
binary # operator.
|
||||
def GetCurrentTokenPrecedence(self):
|
||||
if isinstance(self.current, CharacterToken):
|
||||
return self.binop_precedence.get(self.current.char, -1)
|
||||
else:
|
||||
return -1
|
||||
|
||||
# identifierexpr ::= identifier | identifier '(' expression* ')'
|
||||
def ParseIdentifierExpr(self):
|
||||
identifier_name = self.current.name
|
||||
self.Next() # eat identifier.
|
||||
|
||||
if self.current != CharacterToken('('): # Simple variable reference.
|
||||
return VariableExpressionNode(identifier_name)
|
||||
|
||||
# Call.
|
||||
self.Next() # eat '('.
|
||||
args = []
|
||||
if self.current != CharacterToken(')'):
|
||||
while True:
|
||||
args.append(self.ParseExpression())
|
||||
if self.current == CharacterToken(')'):
|
||||
break
|
||||
elif self.current != CharacterToken(','):
|
||||
raise RuntimeError('Expected ")" or "," in argument list.')
|
||||
self.Next()
|
||||
|
||||
self.Next() # eat ')'.
|
||||
return CallExpressionNode(identifier_name, args)
|
||||
|
||||
# numberexpr ::= number
|
||||
def ParseNumberExpr(self):
|
||||
result = NumberExpressionNode(self.current.value)
|
||||
self.Next() # consume the number.
|
||||
return result
|
||||
|
||||
# parenexpr ::= '(' expression ')'
|
||||
def ParseParenExpr(self):
|
||||
self.Next() # eat '('.
|
||||
|
||||
contents = self.ParseExpression()
|
||||
|
||||
if self.current != CharacterToken(')'):
|
||||
raise RuntimeError('Expected ")".')
|
||||
self.Next() # eat ')'.
|
||||
|
||||
return contents
|
||||
|
||||
# primary ::= identifierexpr | numberexpr | parenexpr
|
||||
def ParsePrimary(self):
|
||||
if isinstance(self.current, IdentifierToken):
|
||||
return self.ParseIdentifierExpr()
|
||||
elif isinstance(self.current, NumberToken):
|
||||
return self.ParseNumberExpr()
|
||||
elif self.current == CharacterToken('('):
|
||||
return self.ParseParenExpr()
|
||||
else: raise RuntimeError('Unknown token when expecting an expression.')
|
||||
|
||||
# binoprhs ::= (operator primary)*
|
||||
def ParseBinOpRHS(self, left, left_precedence):
|
||||
# If this is a binary operator, find its precedence.
|
||||
while True:
|
||||
precedence = self.GetCurrentTokenPrecedence()
|
||||
|
||||
# If this is a binary operator that binds at least as tightly as the
|
||||
# current one, consume it; otherwise we are done.
|
||||
if precedence < left_precedence:
|
||||
return left
|
||||
|
||||
binary_operator = self.current.char
|
||||
self.Next() # eat the operator.
|
||||
|
||||
# Parse the primary expression after the binary operator.
|
||||
right = self.ParsePrimary()
|
||||
|
||||
# If binary_operator binds less tightly with right than the operator after
|
||||
# right, let the pending operator take right as its left.
|
||||
next_precedence = self.GetCurrentTokenPrecedence()
|
||||
if precedence < next_precedence:
|
||||
right = self.ParseBinOpRHS(right, precedence + 1)
|
||||
|
||||
# Merge left/right.
|
||||
left = BinaryOperatorExpressionNode(binary_operator, left, right)
|
||||
|
||||
# expression ::= primary binoprhs
|
||||
def ParseExpression(self):
|
||||
left = self.ParsePrimary()
|
||||
return self.ParseBinOpRHS(left, 0)
|
||||
|
||||
# prototype ::= id '(' id* ')'
|
||||
def ParsePrototype(self):
|
||||
if not isinstance(self.current, IdentifierToken):
|
||||
raise RuntimeError('Expected function name in prototype.')
|
||||
|
||||
function_name = self.current.name
|
||||
self.Next() # eat function name.
|
||||
|
||||
if self.current != CharacterToken('('):
|
||||
raise RuntimeError('Expected "(" in prototype.')
|
||||
self.Next() # eat '('.
|
||||
|
||||
arg_names = []
|
||||
while isinstance(self.current, IdentifierToken):
|
||||
arg_names.append(self.current.name)
|
||||
self.Next()
|
||||
|
||||
if self.current != CharacterToken(')'):
|
||||
raise RuntimeError('Expected ")" in prototype.')
|
||||
|
||||
# Success.
|
||||
self.Next() # eat ')'.
|
||||
|
||||
return PrototypeNode(function_name, arg_names)
|
||||
|
||||
# definition ::= 'def' prototype expression
|
||||
def ParseDefinition(self):
|
||||
self.Next() # eat def.
|
||||
proto = self.ParsePrototype()
|
||||
body = self.ParseExpression()
|
||||
return FunctionNode(proto, body)
|
||||
|
||||
# toplevelexpr ::= expression
|
||||
def ParseTopLevelExpr(self):
|
||||
proto = PrototypeNode('', [])
|
||||
return FunctionNode(proto, self.ParseExpression())
|
||||
|
||||
# external ::= 'extern' prototype
|
||||
def ParseExtern(self):
|
||||
self.Next() # eat extern.
|
||||
return self.ParsePrototype()
|
||||
|
||||
# Top-Level parsing
|
||||
def HandleDefinition(self):
|
||||
self.Handle(self.ParseDefinition, 'Read a function definition:')
|
||||
|
||||
def HandleExtern(self):
|
||||
self.Handle(self.ParseExtern, 'Read an extern:')
|
||||
|
||||
def HandleTopLevelExpression(self):
|
||||
try:
|
||||
function = self.ParseTopLevelExpr().CodeGen()
|
||||
result = g_llvm_executor.run_function(function, [])
|
||||
print 'Evaluated to:', result.as_real(Type.double())
|
||||
except Exception, e:
|
||||
print 'Error:', e
|
||||
try:
|
||||
self.Next() # Skip for error recovery.
|
||||
except:
|
||||
pass
|
||||
|
||||
def Handle(self, function, message):
|
||||
try:
|
||||
print message, function().CodeGen()
|
||||
except Exception, e:
|
||||
print 'Error:', e
|
||||
try:
|
||||
self.Next() # Skip for error recovery.
|
||||
except:
|
||||
pass
|
||||
|
||||
Main driver code.
|
||||
-----------------
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
def main():
|
||||
# Set up the optimizer pipeline. Start with registering info about how the
|
||||
# target lays out data structures.
|
||||
g_llvm_pass_manager.add(g_llvm_executor.target_data)
|
||||
# Do simple "peephole" optimizations and bit-twiddling optzns.
|
||||
g_llvm_pass_manager.add(PASS_INSTRUCTION_COMBINING)
|
||||
# Reassociate expressions.
|
||||
g_llvm_pass_manager.add(PASS_REASSOCIATE)
|
||||
# Eliminate Common SubExpressions.
|
||||
g_llvm_pass_manager.add(PASS_GVN)
|
||||
# Simplify the control flow graph (deleting unreachable blocks, etc).
|
||||
g_llvm_pass_manager.add(PASS_CFG_SIMPLIFICATION)
|
||||
|
||||
g_llvm_pass_manager.initialize()
|
||||
|
||||
# Install standard binary operators.
|
||||
# 1 is lowest possible precedence. 40 is the highest.
|
||||
operator_precedence = {
|
||||
'<': 10,
|
||||
'+': 20,
|
||||
'-': 20,
|
||||
'*': 40
|
||||
}
|
||||
|
||||
# Run the main "interpreter loop".
|
||||
while True:
|
||||
print 'ready>',
|
||||
try:
|
||||
raw = raw_input()
|
||||
except KeyboardInterrupt:
|
||||
break
|
||||
|
||||
parser = Parser(Tokenize(raw), operator_precedence)
|
||||
while True:
|
||||
# top ::= definition | external | expression | EOF
|
||||
if isinstance(parser.current, EOFToken):
|
||||
break
|
||||
if isinstance(parser.current, DefToken):
|
||||
parser.HandleDefinition()
|
||||
elif isinstance(parser.current, ExternToken):
|
||||
parser.HandleExtern()
|
||||
else:
|
||||
parser.HandleTopLevelExpression()
|
||||
|
||||
# Print out all of the generated code.
|
||||
print '', g_llvm_module
|
||||
|
||||
if __name__ == '__main__':
|
||||
main()
|
||||
1549
docs/source/doc/kaleidoscope/PythonLangImpl5.rst
Normal file
1549
docs/source/doc/kaleidoscope/PythonLangImpl5.rst
Normal file
File diff suppressed because it is too large
Load diff
1557
docs/source/doc/kaleidoscope/PythonLangImpl6.rst
Normal file
1557
docs/source/doc/kaleidoscope/PythonLangImpl6.rst
Normal file
File diff suppressed because it is too large
Load diff
1835
docs/source/doc/kaleidoscope/PythonLangImpl7.rst
Normal file
1835
docs/source/doc/kaleidoscope/PythonLangImpl7.rst
Normal file
File diff suppressed because it is too large
Load diff
275
docs/source/doc/kaleidoscope/PythonLangImpl8.rst
Normal file
275
docs/source/doc/kaleidoscope/PythonLangImpl8.rst
Normal file
|
|
@ -0,0 +1,275 @@
|
|||
***************************************************
|
||||
Chapter 8: Conclusion and other useful LLVM tidbits
|
||||
***************************************************
|
||||
|
||||
Written by Chris Lattner
|
||||
|
||||
Tutorial Conclusion
|
||||
===================
|
||||
|
||||
Welcome to the the final chapter of the "`Implementing a language with LLVM
|
||||
<http://www.llvm.org/docs/tutorial/index.html>`_" tutorial.
|
||||
In the course of this tutorial, we have grown our little Kaleidoscope language
|
||||
from being a useless toy, to being a semi-interesting (but probably still useless)
|
||||
toy. :)
|
||||
|
||||
It is interesting to see how far we've come, and how little code it has taken.
|
||||
We built the entire lexer, parser, AST, code generator, and an interactive run-loop
|
||||
(with a JIT!) by-hand in under 540 lines of (non-comment/non-blank) code.
|
||||
|
||||
Our little language supports a couple of interesting features: it supports user
|
||||
defined binary and unary operators, it uses JIT compilation for immediate evaluation,
|
||||
and it supports a few control flow constructs with SSA construction.
|
||||
|
||||
Part of the idea of this tutorial was to show you how easy and fun it can be to
|
||||
define, build, and play with languages. Building a compiler need not be a scary
|
||||
or mystical process! Now that you've seen some of the basics, I strongly encourage
|
||||
you to take the code and hack on it. For example, try adding:
|
||||
|
||||
- ***global variables*** - While global variables have questional value in modern
|
||||
software engineering, they are often useful when putting together quick
|
||||
little hacks like the Kaleidoscope compiler itself. Fortunately, our
|
||||
current setup makes it very easy to add global variables: just have value
|
||||
lookup check to see if an unresolved variable is in the global variable
|
||||
symbol table before rejecting it. To create a new global variable, make
|
||||
an instance of the LLVM GlobalVariable class.
|
||||
|
||||
- ***typed variables*** - Kaleidoscope currently only supports variables of type
|
||||
double. This gives the language a very nice elegance, because only supporting
|
||||
one type means that you never have to specify types. Different languages have
|
||||
different ways of handling this. The easiest way is to require the user to
|
||||
specify types for every variable definition, and record the type of the variable
|
||||
in the symbol table along with its Value*.
|
||||
|
||||
- ***arrays, structs, vectors, etc*** - Once you add types, you can
|
||||
start extending the type system in all sorts of
|
||||
interesting ways. Simple arrays are very easy and are quite useful
|
||||
for many different applications. Adding them is mostly an
|
||||
exercise in learning how the LLVM `getelementptr
|
||||
<http://www.llvm.org/docs/LangRef.html#i_getelementptr>`_ instruction works:
|
||||
it is so nifty/unconventional, it `has its own FAQ!
|
||||
<http://www.llvm.org/docs/GetElementPtr.html>`_ If you add
|
||||
support for recursive types (e.g. linked lists), make sure to
|
||||
read the `section in the LLVM Programmer's Manual
|
||||
<http://www.llvm.org/docs/ProgrammersManual.html#TypeResolve>`_ that describes
|
||||
how to construct them.
|
||||
|
||||
- ***standard runtime*** - Our current language allows the user to
|
||||
access arbitrary external functions, and we use it for things like "putchard".
|
||||
As you extend the language to add higher-level constructs, often these
|
||||
constructs make the most sense if they are lowered to calls into a
|
||||
language-supplied runtime. For example, if you add hash tables to the
|
||||
language, it would probably make sense to add the routines to a runtime,
|
||||
instead of inlining them all the way.
|
||||
|
||||
- ***memory management*** - Currently we can only access the stack in Kaleidoscope.
|
||||
It would also be useful to be able to allocate heap memory, either with calls
|
||||
to the standard libc malloc/free interface or with a garbage collector.
|
||||
If you would like to use garbage collection, note that LLVM fully supports
|
||||
`Accurate Garbage Collection <http://www.llvm.org/docs/GarbageCollection.html>`_
|
||||
including algorithms that move objects and need to scan/update the stack.
|
||||
|
||||
- ***debugger support*** - LLVM supports generation of `DWARF Debug info
|
||||
<http://www.llvm.org/docs/SourceLevelDebugging.html>`_ which
|
||||
is understood by common debuggers like GDB. Adding support for debug info is
|
||||
fairly straightforward. The best way to understand it is to compile some C/C++
|
||||
code with ``llvm-gcc -g -O0`` and taking a look at what it produces.
|
||||
|
||||
- ***exception handling support*** - LLVM supports generation of `zero cost exceptions
|
||||
<http://www.llvm.org/docs/ExceptionHandling.html>`_ which interoperate
|
||||
with code compiled in other languages. You could also generate code by
|
||||
implicitly making every function return an error value and checking it.
|
||||
You could also make explicit use of setjmp/longjmp. There are many different
|
||||
ways to go here.
|
||||
|
||||
- ***object orientation, generics, database access, complex numbers, geometric
|
||||
programming, ...*** - Really, there is no end of crazy features that you can
|
||||
add to the language.
|
||||
|
||||
- ***unusual domains*** - We've been talking about applying LLVM to a domain that
|
||||
many people are interested in: building a compiler for a specific language.
|
||||
However, there are many other domains that can use compiler technology that are
|
||||
not typically considered. For example, LLVM has been used to implement OpenGL
|
||||
graphics acceleration, translate C++ code to ActionScript, and many other cute
|
||||
and clever things. Maybe you will be the first to JIT compile a regular expression
|
||||
interpreter into native code with LLVM?
|
||||
|
||||
- ***Have fun*** - try doing something crazy and unusual. Building a language like
|
||||
everyone else always has, is much less fun than trying something a little crazy or
|
||||
off the wall and seeing how it turns out. If you get stuck or want to talk about it,
|
||||
feel free to email the `llvmdev mailing list
|
||||
<http://lists.cs.uiuc.edu/mailman/listinfo/llvmdev>`_: it has lots of people who are
|
||||
interested in languages and are often willing to help out.
|
||||
|
||||
Before we end this tutorial, I want to talk about some "tips and tricks" for
|
||||
generating LLVM IR. These are some of the more subtle things that may not be obvious,
|
||||
but are very useful if you want to take advantage of LLVM's capabilities.
|
||||
|
||||
Properties of the LLVM IR
|
||||
=========================
|
||||
|
||||
We have a couple common questions about code in the LLVM IR form - let's
|
||||
just get these out of the way right now, shall we?
|
||||
|
||||
--------------
|
||||
|
||||
Target Independence
|
||||
-------------------
|
||||
|
||||
Kaleidoscope is an example of a "portable language": any program
|
||||
written in Kaleidoscope will work the same way on any target that it
|
||||
runs on. Many other languages have this property, e.g. LISP, Java, Haskell,
|
||||
Javascript, Python, etc. (note that while these languages are portable,
|
||||
not all their libraries are).
|
||||
|
||||
One nice aspect of LLVM is that it is often capable of preserving target
|
||||
independence in the IR: you can take the LLVM IR for a Kaleidoscope-compiled
|
||||
program and run it on any target that LLVM supports, even emitting C code and
|
||||
compiling that on targets that LLVM doesn't support natively.
|
||||
You can trivially tell that the Kaleidoscope compiler generates target-
|
||||
independent code because it never queries for any target-specific
|
||||
information when generating code.
|
||||
|
||||
The fact that LLVM provides a compact, target-independent,
|
||||
representation for code gets a lot of people excited. Unfortunately,
|
||||
these people are usually thinking about C or a language from the
|
||||
C family when they are asking questions about language portability.
|
||||
I say "unfortunately", because there is really no way to make (fully general) C
|
||||
code portable, other than shipping the source code around (and of course, C
|
||||
source code is not actually portable in general either - ever port a really old
|
||||
application from 32- to 64-bits?).
|
||||
|
||||
The problem with C (again, in its full generality) is that it is heavily
|
||||
laden with target specific assumptions. As one simple example, the
|
||||
preprocessor often destructively removes target-independence from the code
|
||||
when it processes the input text::
|
||||
|
||||
|
||||
#ifdef __i386__
|
||||
int X = 1;
|
||||
#else
|
||||
int X = 42;
|
||||
#endif
|
||||
|
||||
While it is possible to engineer more and more complex solutions to problems like
|
||||
this, it cannot be solved in full generality in a way that is better than
|
||||
shipping the actual source code.
|
||||
|
||||
That said, there are interesting subsets of C that can be made portable.
|
||||
If you are willing to fix primitive types to a fixed size (say int = 32-bits, and
|
||||
long = 64-bits), don't care about ABI compatibility with existing binaries, and
|
||||
are willing to give up some other minor features, you can have portable code.
|
||||
This can make sense for specialized domains such as an in-kernel language.
|
||||
|
||||
--------------
|
||||
|
||||
Safety Guarantees
|
||||
-----------------
|
||||
|
||||
Many of the languages above are also "safe" languages: it is
|
||||
impossible for a program written in Java to corrupt its address space and
|
||||
crash the process (assuming the JVM has no bugs). Safety is an
|
||||
interesting property that requires a combination of language design,
|
||||
runtime support, and often operating system support.
|
||||
|
||||
It is certainly possible to implement a safe language in LLVM, but LLVM
|
||||
IR does not itself guarantee safety. The LLVM IR allows unsafe pointer casts,
|
||||
use after free bugs, buffer over-runs, and a variety of other problems. Safety
|
||||
needs to be implemented as a layer on top of LLVM and, conveniently, several groups
|
||||
have investigated this. Ask on the `llvmdev mailing list
|
||||
<http://lists.cs.uiuc.edu/mailman/listinfo/llvmdev>`_ if you are interested
|
||||
in more details.
|
||||
|
||||
--------------
|
||||
|
||||
Language-Specific Optimizations
|
||||
-------------------------------
|
||||
|
||||
One thing about LLVM that turns off many people is that it does not solve all
|
||||
the world's problems in one system (sorry 'world hunger', someone else will
|
||||
have to solve you some other day). One specific complaint is that people perceive
|
||||
LLVM as being incapable of performing high-level language-specific optimization:
|
||||
LLVM "loses too much information".
|
||||
|
||||
Unfortunately, this is really not the place to give you a full and unified
|
||||
version of "Chris Lattner's theory of compiler design". Instead,
|
||||
I'll make a few observations:
|
||||
|
||||
First, you're right that LLVM does lose information.
|
||||
For example, as of this writing, there is no way to
|
||||
distinguish in the LLVM IR whether an SSA-value came
|
||||
from a C "int" or a C "long" on an ILP32 machine
|
||||
(other than debug info). Both get compiled down to an 'i32'
|
||||
value and the information about what it came from is lost.
|
||||
The more general issue here, is that the LLVM type system
|
||||
uses "structural equivalence" instead of "name equivalence".
|
||||
Another place this surprises people is if you have two types
|
||||
in a high-level language that have the same structure (e.g.
|
||||
two different structs that have a single int field):
|
||||
these types will compile down into a single LLVM type and it
|
||||
will be impossible to tell what it came from.
|
||||
|
||||
Second, while LLVM does lose information, LLVM is not a
|
||||
fixed target: we continue to enhance and improve it in many
|
||||
different ways. In addition to adding new features (LLVM did not
|
||||
always support exceptions or debug info), we also extend the IR to
|
||||
capture important information for optimization (e.g. whether an argument
|
||||
is sign or zero extended, information about pointers aliasing, etc). Many
|
||||
of the enhancements are user-driven: people want LLVM to include some specific
|
||||
feature, so they go ahead and extend it.
|
||||
|
||||
Third, it is possible and easy to add language-specific optimizations,
|
||||
and you have a number of choices in how to do it. As one trivial example,
|
||||
it is easy to add language-specific optimization passes that "know" things
|
||||
about code compiled for a language. In the case of the C family, there is an
|
||||
optimization pass that "knows" about the standard C library functions. If you
|
||||
call "exit(0)" in main(), it knows that it is safe to optimize that into "return
|
||||
0;" because C specifies what the 'exit' function does.
|
||||
|
||||
In addition to simple library knowledge, it is possible to embed a
|
||||
variety of other language-specific information into the LLVM IR. If
|
||||
you have a specific need and run into a wall, please bring the topic
|
||||
up on the llvmdev list. At the very worst, you can always treat LLVM as
|
||||
if it were a "dumb code generator" and implement the high-level optimizations
|
||||
you desire in your front-end, on the language-specific AST.
|
||||
|
||||
--------------
|
||||
|
||||
Tips and Tricks
|
||||
===============
|
||||
|
||||
There is a variety of useful tips and tricks that you come to
|
||||
know after working on/with LLVM that aren't obvious at first glance.
|
||||
Instead of letting everyone rediscover them, this section talks about
|
||||
some of these issues.
|
||||
|
||||
--------------
|
||||
|
||||
Implementing portable offsetof/sizeof
|
||||
-------------------------------------
|
||||
|
||||
One interesting thing that comes up, if you are trying to keep the
|
||||
code generated by your compiler "target independent", is that you often
|
||||
need to know the size of some LLVM type or the offset of some field in an
|
||||
llvm structure. For example, you might need to pass the size of a type into
|
||||
a function that allocates memory.
|
||||
|
||||
Unfortunately, this can vary widely across targets: for example the width
|
||||
of a pointer is trivially target-specific. However, there is a `clever way
|
||||
to use the getelementptr instruction
|
||||
<http://nondot.org/sabre/LLVMNotes/SizeOf-OffsetOf-VariableSizedStructs.txt>`_ that
|
||||
allows you to compute this in a portable way.
|
||||
|
||||
--------------
|
||||
|
||||
Garbage Collected Stack Frames
|
||||
------------------------------
|
||||
|
||||
Some languages want to explicitly manage their stack frames, often
|
||||
so that they are garbage collected or to allow easy implementation
|
||||
of closures. There are often better ways to implement these features
|
||||
than explicit stack frames, but `LLVM does support them
|
||||
<http://nondot.org/sabre/LLVMNotes/ExplicitlyManagedStackFrames.txt>`_, if you want.
|
||||
It requires your front-end to convert the code into `Continuation Passing
|
||||
Style <http://en.wikipedia.org/wiki/Continuation-passing_style>`_
|
||||
and the use of tail calls (which LLVM also supports).
|
||||
21
docs/source/doc/kaleidoscope/index.rst
Normal file
21
docs/source/doc/kaleidoscope/index.rst
Normal file
|
|
@ -0,0 +1,21 @@
|
|||
Kaleidoscope
|
||||
--------------
|
||||
|
||||
Implementing a Language with LLVM
|
||||
|
||||
The LLVM `Kaleidoscope <http://www.llvm.org/docs/tutorial/>`_ tutorial
|
||||
has been ported to llvmpy by Max Shawabkeh.
|
||||
|
||||
.. toctree::
|
||||
:titlesonly:
|
||||
:numbered:
|
||||
|
||||
PythonLangImpl1.rst
|
||||
PythonLangImpl2.rst
|
||||
PythonLangImpl3.rst
|
||||
PythonLangImpl4.rst
|
||||
PythonLangImpl5.rst
|
||||
PythonLangImpl6.rst
|
||||
PythonLangImpl7.rst
|
||||
PythonLangImpl8.rst
|
||||
|
||||
10
docs/source/doc/llpython/articles.rst
Normal file
10
docs/source/doc/llpython/articles.rst
Normal file
|
|
@ -0,0 +1,10 @@
|
|||
LLPython Articles
|
||||
=================
|
||||
|
||||
.. toctree::
|
||||
:titlesonly:
|
||||
:maxdepth: 1
|
||||
|
||||
intro_llpython.rst
|
||||
nobitey_dev.rst
|
||||
ctmp_in_llpython.rst
|
||||
5
docs/source/doc/llpython/ctmp_in_llpython.rst
Normal file
5
docs/source/doc/llpython/ctmp_in_llpython.rst
Normal file
|
|
@ -0,0 +1,5 @@
|
|||
Compile-time Metaprogramming in LLPython
|
||||
========================================
|
||||
|
||||
In this article, we discuss how LLPython supports compile-time
|
||||
metaprogramming.
|
||||
9
docs/source/doc/llpython/index.rst
Normal file
9
docs/source/doc/llpython/index.rst
Normal file
|
|
@ -0,0 +1,9 @@
|
|||
LLPython Documentation
|
||||
======================
|
||||
|
||||
.. toctree::
|
||||
:titlesonly:
|
||||
:maxdepth: 2
|
||||
|
||||
articles.rst
|
||||
reference.rst
|
||||
46
docs/source/doc/llpython/intro_llpython.rst
Normal file
46
docs/source/doc/llpython/intro_llpython.rst
Normal file
|
|
@ -0,0 +1,46 @@
|
|||
====================
|
||||
Introducing LLPython
|
||||
====================
|
||||
|
||||
In this article, we introduce the llpython package. The primary goal
|
||||
of the llpython package is to provide a Python dialect/subset that
|
||||
maps directly to LLVM code. LLPython differs from its originating
|
||||
LLVM translator, Numba, in the following aspects:
|
||||
|
||||
* LLPython code is not intended to work in Python if not translated
|
||||
and wrapped.
|
||||
* The LLPython translator only uses LLVM types.
|
||||
* LLPython is explicitly typed, and does not support type inference.
|
||||
LLPython does not support implicit casts, all casts must be explicit.
|
||||
* LLPython supports code that directly calls the C API, the Python C
|
||||
API, and the llvm.core.Builder methods.
|
||||
|
||||
Additionally, we designed the sub-package to have the following
|
||||
engineering properties:
|
||||
|
||||
* Usable from Python 2.7, and 3.X. At the time of writing, we plan
|
||||
to support Python 2.6.
|
||||
* Clean from Numba dependencies (other than llvmpy), and can be used
|
||||
as a standalone code generator without a full Numba installation.
|
||||
* Provides a series of Python bytecode passes that can be easily
|
||||
used by other projects.
|
||||
|
||||
|
||||
LLPython Origins
|
||||
================
|
||||
|
||||
We developed LLPython with the initial goal of simplifying writing
|
||||
LLVM code.
|
||||
|
||||
|
||||
LLPython Internals
|
||||
==================
|
||||
|
||||
In this section, we describe the various passes performed by the
|
||||
LLPython translator.
|
||||
|
||||
|
||||
Conclusions
|
||||
===========
|
||||
|
||||
LLPython is neat.
|
||||
6
docs/source/doc/llpython/llpython.byte_control.rst
Normal file
6
docs/source/doc/llpython/llpython.byte_control.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
=====================
|
||||
llpython.byte_control
|
||||
=====================
|
||||
|
||||
.. automodule:: llpython.byte_control
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.byte_flow.rst
Normal file
6
docs/source/doc/llpython/llpython.byte_flow.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
==================
|
||||
llpython.byte_flow
|
||||
==================
|
||||
|
||||
.. automodule:: llpython.byte_flow
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.byte_translator.rst
Normal file
6
docs/source/doc/llpython/llpython.byte_translator.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
========================
|
||||
llpython.byte_translator
|
||||
========================
|
||||
|
||||
.. automodule:: llpython.byte_translator
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.bytecode_visitor.rst
Normal file
6
docs/source/doc/llpython/llpython.bytecode_visitor.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
=========================
|
||||
llpython.bytecode_visitor
|
||||
=========================
|
||||
|
||||
.. automodule:: llpython.bytecode_visitor
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.bytetype.rst
Normal file
6
docs/source/doc/llpython/llpython.bytetype.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
=================
|
||||
llpython.bytetype
|
||||
=================
|
||||
|
||||
.. automodule:: llpython.bytetype
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.control_flow.rst
Normal file
6
docs/source/doc/llpython/llpython.control_flow.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
=====================
|
||||
llpython.control_flow
|
||||
=====================
|
||||
|
||||
.. automodule:: llpython.control_flow
|
||||
:members:
|
||||
|
|
@ -0,0 +1,6 @@
|
|||
=============================
|
||||
llpython.gen_bytecode_visitor
|
||||
=============================
|
||||
|
||||
.. automodule:: llpython.gen_bytecode_visitor
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.nobitey.rst
Normal file
6
docs/source/doc/llpython/llpython.nobitey.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
================
|
||||
llpython.nobitey
|
||||
================
|
||||
|
||||
.. automodule:: llpython.nobitey
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.opcode_util.rst
Normal file
6
docs/source/doc/llpython/llpython.opcode_util.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
====================
|
||||
llpython.opcode_util
|
||||
====================
|
||||
|
||||
.. automodule:: llpython.opcode_util
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.phi_injector.rst
Normal file
6
docs/source/doc/llpython/llpython.phi_injector.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
=====================
|
||||
llpython.phi_injector
|
||||
=====================
|
||||
|
||||
.. automodule:: llpython.phi_injector
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.pyaddfunc.rst
Normal file
6
docs/source/doc/llpython/llpython.pyaddfunc.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
==================
|
||||
llpython.pyaddfunc
|
||||
==================
|
||||
|
||||
.. automodule:: llpython.pyaddfunc
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.rst
Normal file
6
docs/source/doc/llpython/llpython.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
========
|
||||
llpython
|
||||
========
|
||||
|
||||
.. automodule:: llpython
|
||||
:members:
|
||||
5
docs/source/doc/llpython/nobitey_dev.rst
Normal file
5
docs/source/doc/llpython/nobitey_dev.rst
Normal file
|
|
@ -0,0 +1,5 @@
|
|||
nobitey: Using ctypes and llvmpy to Bypass ctypes
|
||||
=================================================
|
||||
|
||||
In this article, we show how nobitey uses llvmpy to eliminate the
|
||||
ctypes call overhead.
|
||||
21
docs/source/doc/llpython/reference.rst
Normal file
21
docs/source/doc/llpython/reference.rst
Normal file
|
|
@ -0,0 +1,21 @@
|
|||
LLPython Module Reference
|
||||
=========================
|
||||
|
||||
Contents:
|
||||
|
||||
.. toctree::
|
||||
:titlesonly:
|
||||
:maxdepth: 2
|
||||
|
||||
llpython.rst
|
||||
llpython.bytecode_visitor.rst
|
||||
llpython.byte_control.rst
|
||||
llpython.byte_flow.rst
|
||||
llpython.byte_translator.rst
|
||||
llpython.bytetype.rst
|
||||
llpython.control_flow.rst
|
||||
llpython.gen_bytecode_visitor.rst
|
||||
llpython.nobitey.rst
|
||||
llpython.opcode_util.rst
|
||||
llpython.phi_injector.rst
|
||||
llpython.pyaddfunc.rst
|
||||
65
docs/source/doc/llvm.core.Argument.rst
Normal file
65
docs/source/doc/llvm.core.Argument.rst
Normal file
|
|
@ -0,0 +1,65 @@
|
|||
+-------------------------------+
|
||||
| layout: page |
|
||||
+-------------------------------+
|
||||
| title: Argument (llvm.core) |
|
||||
+-------------------------------+
|
||||
|
||||
The ``args`` property of ``llvm.core.Function`` objects yields
|
||||
``llvm.core.Argument`` objects. This allows for setting attributes for
|
||||
functions arguments. ``Argument`` objects cannot be constructed from
|
||||
user code, the only way to get a reference to these are from
|
||||
``Function`` objects.
|
||||
|
||||
The method ``add_attribute`` and ``remove_attribute`` can be used to add
|
||||
or remove the following attributes:
|
||||
|
||||
Value\| Equivalent LLVM Assembly Keyword \|
|
||||
-----\|----------------------------------\| ``ATTR_ZEXT``\ \|
|
||||
``zeroext`` \| ``ATTR_SEXT``\ \| ``signext`` \| ``ATTR_IN_REG``\ \|
|
||||
``inreg`` \| ``ATTR_BY_VAL``\ \| ``byval`` \| ``ATTR_STRUCT_RET``\ \|
|
||||
``sret`` \| ``ATTR_NO_ALIAS``\ \| ``noalias`` \| ``ATTR_NO_CAPTURE``\ \|
|
||||
``nocapture`` \| ``ATTR_NEST``\ \| ``nest`` \|
|
||||
|
||||
These method work exactly like the `corresponding
|
||||
methods <functions.html#fnattr>`_ of the ``Function`` class above. Refer
|
||||
`LLVM docs <http://www.llvm.org/docs/LangRef.html#paramattrs>`_ for
|
||||
information on what each attribute means.
|
||||
|
||||
The alignment of any argument can be set via the ``alignment`` property,
|
||||
to any power of 2.
|
||||
|
||||
llvm.core.Argument
|
||||
==================
|
||||
|
||||
Base Class
|
||||
----------
|
||||
|
||||
- `llvm.core.Value <llvm.core.Value.html>`_
|
||||
|
||||
Properties
|
||||
----------
|
||||
|
||||
``alignment``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
The alignment of the argument. Must be a power of 2.
|
||||
|
||||
Methods
|
||||
-------
|
||||
|
||||
``add_attribute(attr)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Add an attribute ``attr`` to the argument, from the set listed above.
|
||||
|
||||
``remove_attribute(attr)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Remove the attribute ``attr`` of the argument.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.Argument
|
||||
:members:
|
||||
:undoc-members:
|
||||
37
docs/source/doc/llvm.core.ArrayType.rst
Normal file
37
docs/source/doc/llvm.core.ArrayType.rst
Normal file
|
|
@ -0,0 +1,37 @@
|
|||
+--------------------------------+
|
||||
| layout: page |
|
||||
+--------------------------------+
|
||||
| title: ArrayType (llvm.core) |
|
||||
+--------------------------------+
|
||||
|
||||
llvm.core.ArrayType
|
||||
===================
|
||||
|
||||
Base Class
|
||||
----------
|
||||
|
||||
- `llvm.core.Type <llvm.core.Type.html>`_
|
||||
|
||||
Properties
|
||||
----------
|
||||
|
||||
``element``
|
||||
~~~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
A ``Type`` object representing the type of the element of the array.
|
||||
|
||||
``count``
|
||||
~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
The number of elements in the array.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.ArrayType
|
||||
:members:
|
||||
:undoc-members:
|
||||
51
docs/source/doc/llvm.core.BasicBlock.rst
Normal file
51
docs/source/doc/llvm.core.BasicBlock.rst
Normal file
|
|
@ -0,0 +1,51 @@
|
|||
+---------------------------------+
|
||||
| layout: page |
|
||||
+---------------------------------+
|
||||
| title: BasicBlock (llvm.core) |
|
||||
+---------------------------------+
|
||||
|
||||
A basicblock is a list of instructions. A wellformed basicblock should
|
||||
end with a terminator. ``Function.verify()`` will verify that. A
|
||||
terminator is either a branch instruction or return instruction. It is
|
||||
not possible to have instructions after a branch or return instruction.
|
||||
|
||||
llvm.core.BasicBlock
|
||||
====================
|
||||
|
||||
Base Class
|
||||
----------
|
||||
|
||||
- `llvm.core.Value <llvm.core.Value.html>`_
|
||||
|
||||
Methods
|
||||
-------
|
||||
|
||||
``delete(self)``
|
||||
~~~~~~~~~~~~~~~~
|
||||
|
||||
Delete this basicblock from the function (``self.function``).
|
||||
|
||||
``insert_before(self, name)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
TODO
|
||||
|
||||
Proporties
|
||||
----------
|
||||
|
||||
``function``
|
||||
~~~~~~~~~~~~
|
||||
|
||||
The parent function of this basicblock.
|
||||
|
||||
``instructions``
|
||||
~~~~~~~~~~~~~~~~
|
||||
|
||||
A list of instructions in this basicblock.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.BasicBlock
|
||||
:members:
|
||||
:undoc-members:
|
||||
418
docs/source/doc/llvm.core.Builder.rst
Normal file
418
docs/source/doc/llvm.core.Builder.rst
Normal file
|
|
@ -0,0 +1,418 @@
|
|||
+------------------------------+
|
||||
| layout: page |
|
||||
+------------------------------+
|
||||
| title: Builder (llvm.core) |
|
||||
+------------------------------+
|
||||
|
||||
The ``Builder`` class corresponds to the
|
||||
`IRBuilder <http://llvm.org/docs/doxygen/html/classllvm_1_1IRBuilder.html>`_
|
||||
in C++ llvm. It provides an uniform API to populating
|
||||
`BasicBlocks <llvm.core.BasicBlock.html>`_. Most of the methods in
|
||||
``Builder`` correspond to the instructions in the LLVM IR. See `LLVM
|
||||
documentation <http://llvm.org/docs/LangRef.html>`_ for detail. These
|
||||
methods have the ``name`` argument for overiding the name of the result
|
||||
variable. When it is an empty string (default value), LLVM will set a
|
||||
numeric ID for the result variable.
|
||||
|
||||
llvm.core.Builder
|
||||
=================
|
||||
|
||||
- This will become a table of contents (this text will be scraped).
|
||||
{:toc}
|
||||
|
||||
Static Factor Method
|
||||
--------------------
|
||||
|
||||
``new(basic_block)``
|
||||
~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Create an instance of ``Builder`` at
|
||||
`BasicBlock <llvm.core.BasicBlock.html>`_.
|
||||
|
||||
Methods
|
||||
-------
|
||||
|
||||
``add(self, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``lhs+rhs`` for integer values only.
|
||||
|
||||
``alloca(self, ty, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that allocates stack memory for a value of type
|
||||
``ty``.
|
||||
|
||||
``alloca_array(self, ty, size, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that allocates stack memory for a ``size``
|
||||
elements array of type ``ty``.
|
||||
|
||||
``and_(self, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``lhs & rhs``.
|
||||
|
||||
``ashr(self, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``lhs >> rhs`` using arithmetic
|
||||
shift.
|
||||
|
||||
``bitcast(self, value, dest_ty, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that cast ``value`` to type ``dest_ty``.
|
||||
|
||||
``branch(self, bblk)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that branch to basicblock ``bblk``.
|
||||
|
||||
``call(self, fn, args, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that call function ``fn`` with a iterable of
|
||||
arguments ``args``.
|
||||
|
||||
``cbranch(self, if_value, then_blk, else_blk)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that conditionally branch base on the predicate
|
||||
``if_value``. If ``if_value`` is ``True``, branch to ``then_blk``;
|
||||
Otherwise, branch to ``else_blk``.
|
||||
|
||||
``extract_element(self, vec_val, idx_val, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that extracts an element from a value ``vec_val``
|
||||
of `llvm.core.VectorType <llvm.core.VectorType.html>`_ at index
|
||||
``idx_val``.
|
||||
|
||||
``extract_value(self, retval, idx, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that extracts an element from an aggregate value
|
||||
``retval`` at index ``idx``.
|
||||
|
||||
``fadd(self, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``lhs + rhs`` for floating-point
|
||||
values.
|
||||
|
||||
``fcmp(self, rpred, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that compares ``lhs`` and ``rhs`` using the
|
||||
comparision operation defined by ``rpred``. See
|
||||
`here <comparision.html#fcmp>`_ for a list of comparators.
|
||||
|
||||
``fdiv(self, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``lhs / rhs`` for floating-point
|
||||
values.
|
||||
|
||||
``fmul(self, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``lhs * rhs`` for floating-point
|
||||
values.
|
||||
|
||||
``fpext(self, value, dest_ty, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that extends ``value`` to a float type
|
||||
``dest_ty``.
|
||||
|
||||
``fptosi(self, value, dest_ty, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that converts a floating-point value ``value`` to
|
||||
a signed integer type ``dest_ty``.
|
||||
|
||||
``fptoui(self, value, dest_ty, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that converts a floating-point value ``value`` to
|
||||
an unsigned integer type ``dest_ty``.
|
||||
|
||||
``fptrunc(self, value, dest_ty, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that truncates a floating-point value ``value`` to
|
||||
a float type ``dest_ty``.
|
||||
|
||||
``free(self, ptr)``
|
||||
~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that call performs heap deallocation on pointer
|
||||
``ptr``.
|
||||
|
||||
``frem(self, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``lhs % rhs`` for floating-point
|
||||
values.
|
||||
|
||||
``fsub(self, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``lhs - rhs`` for floating-point
|
||||
values.
|
||||
|
||||
``gep(self, ptr, indices, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
See `GEP <http://llvm.org/docs/LangRef.html#i_getelementptr>`_.
|
||||
|
||||
``getresult(self, retval, idx, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
same as ``extract_value``.
|
||||
|
||||
``icmp(self, ipred, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that compares ``lhs`` and ``rhs`` using the
|
||||
comparision operation defined by ``ipred``. See
|
||||
`here <comparision.html#icmp>`_ for a list of comparators.
|
||||
|
||||
``insert_element(self, vec_val, elt_val, idx_val, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that inserts a value ``elt_val`` into ``vec_val``
|
||||
of `llvm.core.VectorType <llvm.core.VectorType.html>`_ at index
|
||||
``idx_val``.
|
||||
|
||||
``inttoptr(self, value, dest_ty, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that converts an integer ``value`` to pointer
|
||||
``dest_ty``.
|
||||
|
||||
``invoke(self, func, args, then_blk, catch_blk, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
See `invoke <http://llvm.org/docs/LangRef.html#i_invoke>`_
|
||||
|
||||
``load(self, ptr, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that loads a value at the memory pointed by
|
||||
``ptr``.
|
||||
|
||||
``lshr(self, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``lhs >> rhs`` using logical shift.
|
||||
|
||||
``malloc(self, ty, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that allocates heap memory of type ``ty``. The
|
||||
instruction returns a pointer that points to a value of type ``ty``.
|
||||
|
||||
``malloc_array(self, ty, size, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Similar to ``malloc`` but allocates an array of ``size`` elements.
|
||||
|
||||
``mul(self, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``lhs * rhs`` for integer types.
|
||||
|
||||
``neg(self, val, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``0 - val``.
|
||||
|
||||
``not_(self, val, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes an one's complement of ``val``.
|
||||
|
||||
``or_(self, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``lhs | rhs``.
|
||||
|
||||
``phi(self, ty, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Create a PHI node of type ``ty``.
|
||||
|
||||
``position_at_beginning(self, bblk)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Position the builder at the beginning of the given block. Next
|
||||
instruction inserted will be first one in the block.
|
||||
|
||||
``position_at_end(self, bblk)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Position the builder at the end of the given block. Next instruction
|
||||
inserted will be last one in the block.
|
||||
|
||||
``position_before(self, instr)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Position the builder before the given instruction. The instruction can
|
||||
belong to a basic block other than the current one.
|
||||
|
||||
``ptrtoint(self, value, dest_ty, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that converts a pointer to an integer ``value`` of
|
||||
type ``dest_ty``.
|
||||
|
||||
``ret(self, value)``
|
||||
~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that returns ``value``.
|
||||
|
||||
``ret_many(self, values)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that returns ``values`` which is an iterable of
|
||||
`llvm.core.Value <llvm.core.Value.html>`_.
|
||||
|
||||
``ret_void(self)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that returns nothing (void).
|
||||
|
||||
``sdiv(self, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``lhs / rhs`` for signed integers.
|
||||
|
||||
``select(self, cond, then_value, else_value, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``cond ? then_value : else_value``.
|
||||
|
||||
``sext(self, value, dest_ty, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that sign extends an integer ``value`` to type
|
||||
``dest_ty``.
|
||||
|
||||
``shl(self, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``lhs << rhs``.
|
||||
|
||||
``shuffle_vector(self, vecA, vecB, mask, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that performs a vector shuffle base on the two
|
||||
vectors -- ``vecA`` and ``vecB``, base on a bit mask ``mask``. The mask
|
||||
must be a constant.
|
||||
|
||||
See `LLVM document <http://llvm.org/docs/LangRef.html#i_shufflevector>`_
|
||||
for detail.
|
||||
|
||||
``sitofp(self, value, dest_ty, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that converts a signed integer ``value`` to a
|
||||
floating-point type ``dest_ty``.
|
||||
|
||||
``srem(self, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``lhs % rhs`` for signed integers.
|
||||
|
||||
``store(self, value, ptr)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that stores ``value`` into the memory pointed by
|
||||
``ptr``.
|
||||
|
||||
``sub(self, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``lhs - rhs``.
|
||||
|
||||
``switch(self, value, else_blk, n=10)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that transfer control flow depending on the
|
||||
``value``. ``else_blk`` is the default case. ``n`` sets the number of
|
||||
additional cases.
|
||||
|
||||
This method returns an instance of
|
||||
`SwitchInstruction <llvm.core.Instruction.html#switchinstr>`_ for adding
|
||||
cases to the switch.
|
||||
|
||||
``trunc(self, value, dest_ty, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that truncates an integer ``value`` to the
|
||||
destination integer type ``dest_ty``.
|
||||
|
||||
``udiv(self, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``lhs / rhs`` for unsigned integers.
|
||||
|
||||
``uitofp(self, value, dest_ty, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that converts an unsigned integer ``value`` to a
|
||||
floating-point type ``dest_ty``.
|
||||
|
||||
``unreachable(self)``
|
||||
~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an unreachabe instruction, which has no defined semantics. See
|
||||
`LLVM document <http://llvm.org/docs/LangRef.html#i_unreachable>`_ for
|
||||
detail.
|
||||
|
||||
``urem(self, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``lhs % rhs`` for unsigned integers.
|
||||
|
||||
``vaarg(self, list_val, ty, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
This is used to access variable arguments given as ``list_val`` of type
|
||||
``ty``. see `LLVM
|
||||
document <http://llvm.org/docs/LangRef.html#int_varargs>`_ about
|
||||
variable argument intrinsics.
|
||||
|
||||
``xor(self, lhs, rhs, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that computes ``lhs xor rhs``.
|
||||
|
||||
``zext(self, value, dest_ty, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert an instruction that zero extends ``value`` to type ``dest_ty``.
|
||||
|
||||
Properties
|
||||
----------
|
||||
|
||||
``basic_block``
|
||||
~~~~~~~~~~~~~~~
|
||||
|
||||
The `BasicBlock <llvm.core.BasicBlock.html>`_ where the builder is
|
||||
positioned.
|
||||
|
||||
``block``
|
||||
~~~~~~~~~
|
||||
|
||||
Deprecated. Same as ``basic_block``
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.Builder
|
||||
:members:
|
||||
:undoc-members:
|
||||
363
docs/source/doc/llvm.core.Constant.rst
Normal file
363
docs/source/doc/llvm.core.Constant.rst
Normal file
|
|
@ -0,0 +1,363 @@
|
|||
+-------------------------------+
|
||||
| layout: page |
|
||||
+-------------------------------+
|
||||
| title: Constant (llvm.core) |
|
||||
+-------------------------------+
|
||||
|
||||
llvm.core.Constant
|
||||
==================
|
||||
|
||||
``Constant``-s represents constants that appear within the code. The
|
||||
values of such objects are known at creation time. Constants can be
|
||||
created from Python constants. A constant expression is also a constant
|
||||
-- given a ``Constant`` object, an operation (like addition, subtraction
|
||||
etc) can be specified, to yield a new ``Constant`` object. Let's see
|
||||
some examples:
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
#!/usr/bin/env python
|
||||
|
||||
ti = Type.int() # a 32-bit int type
|
||||
|
||||
k1 = Constant.int(ti, 42) # "int k1 = 42;" k2 = k1.add( Constant.int(
|
||||
ti, 10 ) ) # "int k2 = k1 + 10;"
|
||||
|
||||
tr = Type.float()
|
||||
|
||||
r1 = Constant.real(tr, "3.141592") # create from a string
|
||||
r2 = Constant.real(tr, 1.61803399) # create from a Python float
|
||||
|
||||
|
||||
# llvm.core.Constant
|
||||
- This will become a table of contents (this text will be scraped).
|
||||
{:toc}
|
||||
|
||||
|
||||
Static factory methods
|
||||
----------------------
|
||||
|
||||
``null(ty)``
|
||||
~~~~~~~~~~~~
|
||||
|
||||
A null value (all zeros) of type ``ty``
|
||||
|
||||
``all_ones(ty)``
|
||||
~~~~~~~~~~~~~~~~
|
||||
|
||||
All 1's value of type ``ty``
|
||||
|
||||
``undef(ty)``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
An undefined value of type ``ty``
|
||||
|
||||
``int(ty, value)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Integer of type ``ty``, with value ``value`` (a Python int or long)
|
||||
|
||||
``int_signextend(ty, value)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Integer of signed type ``ty`` (use for signed types)
|
||||
|
||||
``real(ty, value)``
|
||||
~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Floating point value of type ``ty``, with value ``value`` (a Python
|
||||
float)
|
||||
|
||||
``stringz(value)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
|
||||
A null-terminated string. ``value`` is a Python string
|
||||
|
||||
``string(value)``
|
||||
~~~~~~~~~~~~~~~~~
|
||||
|
||||
As ``string(ty)``, but not null terminated
|
||||
|
||||
``array(ty, consts)``
|
||||
~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Array of type ``ty``, initialized with ``consts`` (an iterable yielding
|
||||
``Constant`` objects of the appropriate type)
|
||||
|
||||
``struct(ty, consts)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Struct (unpacked) of type ``ty``, initialized with ``consts`` (an
|
||||
iterable yielding ``Constant`` objects of the appropriate type)
|
||||
|
||||
``packed_struct(ty, consts)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
As ``struct(ty, consts)`` but packed
|
||||
|
||||
``vector(consts)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Vector, initialized with ``consts`` (an iterable yielding ``Constant``
|
||||
objects of the appropriate type)
|
||||
|
||||
``sizeof(ty)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Constant value representing the sizeof the type ``ty``
|
||||
|
||||
Methods
|
||||
-------
|
||||
|
||||
The following operations on constants are supported. For more details on
|
||||
any operation, consult the `Constant
|
||||
Expressions <http://www.llvm.org/docs/LangRef.html#constantexprs>`_
|
||||
section of the LLVM Language Reference.
|
||||
|
||||
``k.neg()``
|
||||
~~~~~~~~~~~
|
||||
|
||||
negation, same as ``0 - k``
|
||||
|
||||
``k.not_()``
|
||||
~~~~~~~~~~~~
|
||||
|
||||
1's complement of ``k``. Note trailing underscore.
|
||||
|
||||
``k.add(k2)``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
``k + k2``, where ``k`` and ``k2`` are integers.
|
||||
|
||||
``k.fadd(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
``k + k2``, where ``k`` and ``k2`` are floating-point.
|
||||
|
||||
``k.sub(k2)``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
``k - k2``, where ``k`` and ``k2`` are integers.
|
||||
|
||||
``k.fsub(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
``k - k2``, where ``k`` and ``k2`` are floating-point.
|
||||
|
||||
``k.mul(k2)``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
``k * k2``, where ``k`` and ``k2`` are integers.
|
||||
|
||||
``k.fmul(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
``k * k2``, where ``k`` and ``k2`` are floating-point.
|
||||
|
||||
``k.udiv(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Quotient of unsigned division of ``k`` with ``k2``
|
||||
|
||||
``k.sdiv(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Quotient of signed division of ``k`` with ``k2``
|
||||
|
||||
``k.fdiv(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Quotient of floating point division of ``k`` with ``k2``
|
||||
|
||||
``k.urem(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Reminder of unsigned division of ``k`` with ``k2``
|
||||
|
||||
``k.srem(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Reminder of signed division of ``k`` with ``k2``
|
||||
|
||||
``k.frem(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Reminder of floating point division of ``k`` with ``k2``
|
||||
|
||||
``k.and_(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Bitwise and of ``k`` and ``k2``. Note trailing underscore.
|
||||
|
||||
``k.or_(k2)``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
Bitwise or of ``k`` and ``k2``. Note trailing underscore.
|
||||
|
||||
``k.xor(k2)``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
Bitwise exclusive-or of ``k`` and ``k2``.
|
||||
|
||||
``k.icmp(icmp, k2)``
|
||||
~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Compare ``k`` with ``k2`` using the predicate ``icmp``. See
|
||||
`here <comparision.html#icmp>`_ for list of predicates for integer
|
||||
operands.
|
||||
|
||||
``k.fcmp(fcmp, k2)``
|
||||
~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Compare ``k`` with ``k2`` using the predicate ``fcmp``. See
|
||||
`here <comparision.html#fcmp>`_ for list of predicates for real
|
||||
operands.
|
||||
|
||||
``k.shl(k2)``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
Shift ``k`` left by ``k2`` bits.
|
||||
|
||||
``k.lshr(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Shift ``k`` logically right by ``k2`` bits (new bits are 0s).
|
||||
|
||||
``k.ashr(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Shift ``k`` arithmetically right by ``k2`` bits (new bits are same as
|
||||
previous sign bit).
|
||||
|
||||
``k.gep(indices)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
|
||||
GEP, see `LLVM docs <http://www.llvm.org/docs/GetElementPtr.html>`_.
|
||||
|
||||
``k.trunc(ty)``
|
||||
~~~~~~~~~~~~~~~
|
||||
|
||||
Truncate ``k`` to a type ``ty`` of lower bitwidth.
|
||||
|
||||
``k.sext(ty)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Sign extend ``k`` to a type ``ty`` of higher bitwidth, while extending
|
||||
the sign bit.
|
||||
|
||||
``k.zext(ty)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Sign extend ``k`` to a type ``ty`` of higher bitwidth, all new bits are
|
||||
0s.
|
||||
|
||||
``k.fptrunc(ty)``
|
||||
~~~~~~~~~~~~~~~~~
|
||||
|
||||
Truncate floating point constant ``k`` to floating point type ``ty`` of
|
||||
lower size than k's.
|
||||
|
||||
``k.fpext(ty)``
|
||||
~~~~~~~~~~~~~~~
|
||||
|
||||
Extend floating point constant ``k`` to floating point type ``ty`` of
|
||||
higher size than k's.
|
||||
|
||||
``k.uitofp(ty)``
|
||||
~~~~~~~~~~~~~~~~
|
||||
|
||||
Convert an unsigned integer constant ``k`` to floating point constant of
|
||||
type ``ty``.
|
||||
|
||||
``k.sitofp(ty)``
|
||||
~~~~~~~~~~~~~~~~
|
||||
|
||||
Convert a signed integer constant ``k`` to floating point constant of
|
||||
type ``ty``.
|
||||
|
||||
``k.fptoui(ty)``
|
||||
~~~~~~~~~~~~~~~~
|
||||
|
||||
Convert a floating point constant ``k`` to an unsigned integer constant
|
||||
of type ``ty``.
|
||||
|
||||
``k.fptosi(ty)``
|
||||
~~~~~~~~~~~~~~~~
|
||||
|
||||
Convert a floating point constant ``k`` to a signed integer constant of
|
||||
type ``ty``.
|
||||
|
||||
``k.ptrtoint(ty)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Convert a pointer constant ``k`` to an integer constant of type ``ty``.
|
||||
|
||||
``k.inttoptr(ty)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Convert an integer constant ``k`` to a pointer constant of type ``ty``.
|
||||
|
||||
``k.bitcast(ty)``
|
||||
~~~~~~~~~~~~~~~~~
|
||||
|
||||
Convert ``k`` to a (equal-width) constant of type ``ty``.
|
||||
|
||||
``k.select(cond,k2,k3)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Replace value with ``k2`` if the 1-bit integer constant ``cond`` is 1,
|
||||
else with ``k3``.
|
||||
|
||||
``k.extract_element(idx)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Extract value at ``idx`` (integer constant) from a vector constant
|
||||
``k``.
|
||||
|
||||
``k.insert_element(k2,idx)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert value ``k2`` (scalar constant) at index ``idx`` (integer
|
||||
constant) of vector constant ``k``.
|
||||
|
||||
``k.shuffle_vector(k2,mask)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Shuffle vector constant ``k`` based on vector constants ``k2`` and
|
||||
``mask``.
|
||||
|
||||
--------------
|
||||
|
||||
# Other Constant Classes
|
||||
The following subclasses of ``Constant`` do not provide additional
|
||||
methods, **they serve only to provide richer type information.**
|
||||
|
||||
Subclass \| LLVM C++ Class \| Remarks \|
|
||||
---------\|----------------\|---------\| ``ConstantExpr`` \|
|
||||
``llvmConstantExpr`` \| A constant expression \|
|
||||
``ConstantAggregateZero``\ \| ``llvmConstantAggregateZero``\ \| All-zero
|
||||
constant \| ``ConstantInt``\ \| ``llvmConstantInt``\ \| An integer
|
||||
constant \| ``ConstantFP``\ \| ``llvmConstantFP``\ \| A floating-point
|
||||
constant \| ``ConstantArray``\ \| ``llvmConstantArray``\ \| An array
|
||||
constant \| ``ConstantStruct``\ \| ``llvmConstantStruct``\ \| A
|
||||
structure constant \| ``ConstantVector``\ \| ``llvmConstantVector``\ \|
|
||||
A vector constant \| ``ConstantPointerNull``\ \|
|
||||
``llvmConstantPointerNull``\ \| All-zero pointer constant \|
|
||||
``UndefValue``\ \| ``llvmUndefValue``\ \| corresponds to ``undef`` of
|
||||
LLVM IR \|
|
||||
|
||||
These types are helpful in ``isinstance`` checks, like so:
|
||||
|
||||
{% highlight python %} ti = Type.int(32) k1 = Constant.int(ti, 42) #
|
||||
int32_t k1 = 42; k2 = Constant.array(ti, [k1, k1]) # int32_t k2[] = {
|
||||
k1, k1 };
|
||||
|
||||
assert isinstance(k1, ConstantInt) assert isinstance(k2, ConstantArray)
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.Constant
|
||||
:members:
|
||||
:undoc-members:
|
||||
158
docs/source/doc/llvm.core.Function.rst
Normal file
158
docs/source/doc/llvm.core.Function.rst
Normal file
|
|
@ -0,0 +1,158 @@
|
|||
+-------------------------------+
|
||||
| layout: page |
|
||||
+-------------------------------+
|
||||
| title: Function (llvm.core) |
|
||||
+-------------------------------+
|
||||
|
||||
llvm.core.Function
|
||||
==================
|
||||
|
||||
- This will become a table of contents (this text will be scraped).
|
||||
{:toc}
|
||||
|
||||
Base Class
|
||||
----------
|
||||
|
||||
- `llvm.core.GlobalValue <llvm.core.GlobalValue.html>`_
|
||||
|
||||
Static Constructors
|
||||
-------------------
|
||||
|
||||
``new(module_obj, func_ty, name)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Create a function named ``name`` of type ``func_ty`` in the module
|
||||
``module_obj`` and return a ``Function`` object that represents it.
|
||||
|
||||
``get(module_obj, name)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Return a ``Function`` object to represent the function named ``name`` in
|
||||
the module ``module_obj`` or raise ``LLVMException`` if such a function
|
||||
does not exist.
|
||||
|
||||
``get_or_insert(module_obj, func_ty, name)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Similar to ``get``, except that if the function does not exist it is
|
||||
added first, as though with ``new``.
|
||||
|
||||
``intrinsic(module_obj, intrinsic_id, types)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Create and return a ``Function`` object that refers to an intrinsic
|
||||
function, as described `here <functions.html#intrinsic>`_.
|
||||
|
||||
Properties
|
||||
----------
|
||||
|
||||
``calling_convention``
|
||||
~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
The calling convention for the function, as listed
|
||||
`here <functions.html#callconv>`_.
|
||||
|
||||
``collector``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
A string holding the name of the garbage collection algorithm. See `LLVM
|
||||
docs <http://www.llvm.org/docs/LangRef.html#gc>`_.
|
||||
|
||||
``does_not_throw``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Setting to True sets the ``ATTR_NO_UNWIND`` attribute, False removes it.
|
||||
Shortcut to using ``f.add_attribute(ATTR_NO_UNWIND)`` and
|
||||
``f.remove_attribute(ATTR_NO_UNWIND)``.
|
||||
|
||||
``args``
|
||||
~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
List of `llvm.core.Argument <llvm.core.Argument.html>`_ objects
|
||||
representing the formal arguments of the function.
|
||||
|
||||
``basic_block_count``
|
||||
~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
Number of basic blocks belonging to this function. Same as
|
||||
``len(f.basic_blocks)`` but faster if you just want the count.
|
||||
|
||||
``entry_basic_block``
|
||||
~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
The `llvm.core.BasicBlock <llvm.core.BasicBlock.html>`_ object
|
||||
representing the entry basic block for this function, or ``None`` if
|
||||
there are no basic blocks.
|
||||
|
||||
``basic_blocks``
|
||||
~~~~~~~~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
List of `llvm.core.BasicBlock <llvm.core.BasicBlock.html>`_ objects
|
||||
representing the basic blocks belonging to this function.
|
||||
|
||||
``intrinsic_id``
|
||||
~~~~~~~~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
Returns the ID of the intrinsic if this object represents an intrinsic
|
||||
instruction. Otherwise 0.
|
||||
|
||||
Methods
|
||||
-------
|
||||
|
||||
``delete()``
|
||||
~~~~~~~~~~~~
|
||||
|
||||
Deletes the function from it's module. Do not hold any references to
|
||||
this object after calling ``delete`` on it.
|
||||
|
||||
``append_basic_block(name)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Add a new basic block named ``name``, and return a corresponding
|
||||
`llvm.core.BasicBlock <llvm.core.BasicBlock.html>`_ object. Note that if
|
||||
this is not the entry basic block, you'll have to add appropriate branch
|
||||
instructions from other basic blocks yourself.
|
||||
|
||||
``add_attribute(attr)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Add an attribute ``attr`` to the function, from the set listed above.
|
||||
|
||||
``remove_attribute(attr)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Remove the attribute ``attr`` of the function.
|
||||
|
||||
``viewCFG()``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
Displays the control flow graph using the GraphViz tool.
|
||||
|
||||
``viewCFGOnly()``
|
||||
~~~~~~~~~~~~~~~~~
|
||||
|
||||
Displays the control flow graph using the GraphViz tool, but omitting
|
||||
function bodies.
|
||||
|
||||
``verify()``
|
||||
~~~~~~~~~~~~
|
||||
|
||||
Verifies the function. See `LLVM
|
||||
docs <http://llvm.org/docs/Passes.html#verify>`_.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.Function
|
||||
:members:
|
||||
:undoc-members:
|
||||
55
docs/source/doc/llvm.core.FunctionType.rst
Normal file
55
docs/source/doc/llvm.core.FunctionType.rst
Normal file
|
|
@ -0,0 +1,55 @@
|
|||
+-----------------------------------+
|
||||
| layout: page |
|
||||
+-----------------------------------+
|
||||
| title: FunctionType (llvm.core) |
|
||||
+-----------------------------------+
|
||||
|
||||
llvm.core.FunctionType
|
||||
======================
|
||||
|
||||
Base Class
|
||||
----------
|
||||
|
||||
- `llvm.core.Type <llvm.core.Type.html>`_
|
||||
|
||||
Properties
|
||||
----------
|
||||
|
||||
``return_type``
|
||||
~~~~~~~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
A `Type <llvm.core.Type.html>`_ object, representing the return type of
|
||||
the function.
|
||||
|
||||
``vararg``
|
||||
~~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
``True`` if the function is variadic.
|
||||
|
||||
``args``
|
||||
~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
Returns an iterable object that yields `Type <llvm.core.Type.html>`_
|
||||
objects that represent, in order, the types of the arguments accepted by
|
||||
the function. Used like this:
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
func_type = Type.function( Type.int(), [
|
||||
Type.int(), Type.int() ] ) for arg in func_type.args: assert arg.kind
|
||||
== TYPE_INTEGER assert arg == Type.int() assert func_type.arg_count
|
||||
== len(func_type.args)
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.FunctionType
|
||||
:members:
|
||||
:undoc-members:
|
||||
103
docs/source/doc/llvm.core.GlobalValue.rst
Normal file
103
docs/source/doc/llvm.core.GlobalValue.rst
Normal file
|
|
@ -0,0 +1,103 @@
|
|||
+----------------------------------+
|
||||
| layout: page |
|
||||
+----------------------------------+
|
||||
| title: GlobalValue (llvm.core) |
|
||||
+----------------------------------+
|
||||
|
||||
The class ``llvm.core.GlobalValue`` represents module-scope aliases,
|
||||
variables and functions. Global variables are represented by the
|
||||
sub-class `llvm.core.GlobalVariable <llvm.core.GlobalVariable.html>`_
|
||||
and functions by `llvm.core.Function <llvm.core.Function.html>`_.
|
||||
|
||||
Global values have the read-write properties ``linkage``, ``section``,
|
||||
``visibility`` and ``alignment``. Use one of the following constants
|
||||
(from llvm.core) as values for ``linkage`` (see `LLVM
|
||||
documentaion <http://www.llvm.org/docs/LangRef.html#linkage>`_ for
|
||||
details on each):
|
||||
|
||||
Value \| Equivalent LLVM Assembly Keyword \|
|
||||
------\|----------------------------------\| ``LINKAGE_EXTERNAL`` \|
|
||||
``externally_visible`` \| ``LINKAGE_AVAILABLE_EXTERNALLY`` \|
|
||||
``available_externally`` \| ``LINKAGE_LINKONCE_ANY`` \| ``linkonce`` \|
|
||||
``LINKAGE_LINKONCE_ODR`` \| ``linkonce_odr`` \| ``LINKAGE_WEAK_ANY`` \|
|
||||
``weak`` \| ``LINKAGE_WEAK_ODR`` \| ``weak_odr`` \|
|
||||
``LINKAGE_APPENDING`` \| ``appending`` \| ``LINKAGE_INTERNAL`` \|
|
||||
``internal`` \| ``LINKAGE_PRIVATE`` \| ``private`` \|
|
||||
``LINKAGE_DLLIMPORT`` \| ``dllimport`` \| ``LINKAGE_DLLEXPORT`` \|
|
||||
``dllexport`` \| ``LINKAGE_EXTERNAL_WEAK`` \| ``extern_weak`` \|
|
||||
``LINKAGE_GHOST`` \| deprecated -- do not use \| ``LINKAGE_COMMON`` \|
|
||||
``common`` \| ``LINKAGE_LINKER_PRIVATE`` \| ``linker_private`` \|
|
||||
|
||||
The ``section`` property can be assigned strings (like ".rodata"), which
|
||||
will be used if the target supports it. Visibility property can be set
|
||||
to one of thse constants (from llvm.core, see also `LLVM
|
||||
docs <http://www.llvm.org/docs/LangRef.html#visibility>`_):
|
||||
|
||||
Value \| Equivalent LLVM Assembly Keyword \|
|
||||
------\|----------------------------------\| ``VISIBILITY_DEFAULT`` \|
|
||||
``default`` \| ``VISIBILITY_HIDDEN`` \| ``hidden`` \|
|
||||
``VISIBILITY_PROTECTED`` \| ``protected`` \|
|
||||
|
||||
The ``alignment`` property can be 0 (default), or can be set to a power
|
||||
of 2. The read-only property ``is_declaration`` can be used to check if
|
||||
the global is a declaration or not. The module to which the global
|
||||
belongs to can be retrieved using the ``module`` property (read-only).
|
||||
|
||||
llvm.core.GlobalValue
|
||||
=====================
|
||||
|
||||
- This will become a table of contents (this text will be scraped).
|
||||
{:toc}
|
||||
|
||||
Base Class
|
||||
----------
|
||||
|
||||
- `llvm.core.Constant <llvm.core.Constant.html>`_
|
||||
|
||||
Properties
|
||||
----------
|
||||
|
||||
``linkage``
|
||||
~~~~~~~~~~~
|
||||
|
||||
The linkage type, takes one of the constants listed above (LINKAGE\_\*).
|
||||
|
||||
``section``
|
||||
~~~~~~~~~~~
|
||||
|
||||
A string like ".rodata", indicating the section into which the global is
|
||||
placed into.
|
||||
|
||||
``visibility``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
The visibility type, takes one of the constants listed above
|
||||
(VISIBILITY\_\*).
|
||||
|
||||
``alignment``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
A power-of-2 integer indicating the boundary to align to.
|
||||
|
||||
``is_declaration``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
``True`` if the global is a declaration, ``False`` otherwise.
|
||||
|
||||
``module``
|
||||
~~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
::
|
||||
|
||||
The module object to which this global belongs to.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.GlobalValue
|
||||
:members:
|
||||
:undoc-members:
|
||||
49
docs/source/doc/llvm.core.GlobalVariable.rst
Normal file
49
docs/source/doc/llvm.core.GlobalVariable.rst
Normal file
|
|
@ -0,0 +1,49 @@
|
|||
+-------------------------------------+
|
||||
| layout: page |
|
||||
+-------------------------------------+
|
||||
| title: GlobalVariable (llvm.core) |
|
||||
+-------------------------------------+
|
||||
|
||||
llvm.core.GlobalVariable
|
||||
========================
|
||||
|
||||
Global variables (``llvm.core.GlobalVariable``) are subclasses of
|
||||
`llvm.core.GlobalValue <llvm.core.GlobalValue.html>`_ and represent
|
||||
module-level variables. These can have optional initializers and can be
|
||||
marked as constants. Global variables can be created either by using the
|
||||
``add_global_variable`` method of the `Module <llvm.core.Module.html>`_
|
||||
class, or by using the static method ``GlobalVariable.new``.
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
# create a global variable using
|
||||
add_global_variable method gv1 =
|
||||
module_obj.add_global_variable(Type.int(), "gv1")
|
||||
|
||||
# or equivalently, using a static constructor method
|
||||
gv2 = GlobalVariable.new(module_obj, Type.int(), "gv2") {% endhighlight
|
||||
%}
|
||||
|
||||
Existing global variables of a module can be accessed by name using
|
||||
``module_obj.get_global_variable_named(name)`` or
|
||||
``GlobalVariable.get``. All existing global variables can be enumerated
|
||||
via iterating over the property ``module_obj.global_variables``.
|
||||
|
||||
{% highlight python %} # retrieve a reference to the global variable
|
||||
gv1, # using the get_global_variable_named method gv1 =
|
||||
module_obj.get_global_variable_named("gv1")
|
||||
|
||||
# or equivalently, using the static ``get`` method:
|
||||
gv2 = GlobalVariable.get(module_obj, "gv2")
|
||||
|
||||
# list all global variables in a module
|
||||
for gv in module_obj.global_variables: print gv.name, "of type",
|
||||
gv.type
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.GlobalVariable
|
||||
:members:
|
||||
:undoc-members:
|
||||
249
docs/source/doc/llvm.core.Instruction.rst
Normal file
249
docs/source/doc/llvm.core.Instruction.rst
Normal file
|
|
@ -0,0 +1,249 @@
|
|||
+----------------------------------+
|
||||
| layout: page |
|
||||
+----------------------------------+
|
||||
| title: Instruction (llvm.core) |
|
||||
+----------------------------------+
|
||||
|
||||
An ``llvm.core.Instruction`` object represents an LLVM instruction. This
|
||||
class is the root of a small hierarchy:
|
||||
|
||||
::
|
||||
|
||||
Instruction
|
||||
CallOrInvokeInstruction
|
||||
PHINode
|
||||
SwitchInstruction
|
||||
CompareInstruction
|
||||
|
||||
Instructions are not created directly, but via a builder. The builder
|
||||
both creates instructions and adds them to a basic block at the same
|
||||
time. One way of getting instruction objects are from basic blocks.
|
||||
|
||||
Being derived from `llvm.core.User <llvm.core.User.html>`_, the
|
||||
instruction is-a user, i.e., an instruction in turn uses other values.
|
||||
The values an instruction uses are its operands. These may be accessed
|
||||
using ``operands`` property from the
|
||||
`llvm.core.User <llvm.core.User.html>`_ base.
|
||||
|
||||
The name of the instruction (like ``add``, ``mul`` etc) can be got via
|
||||
the ``opcode_name`` property. The ``basic_block`` property gives the
|
||||
basic block to which the instruction belongs to. Note that llvmpy does
|
||||
not allow free-standing instruction objects (i.e., all instructions are
|
||||
created contained within a basic block).
|
||||
|
||||
Classes of instructions can be got via the properties ``is_terminator``,
|
||||
``is_binary_op``, ``is_shift`` etc. See below for the full list.
|
||||
|
||||
- This will become a table of contents (this text will be scraped).
|
||||
{:toc}
|
||||
|
||||
llvm.core.Instruction
|
||||
=====================
|
||||
|
||||
Base Class
|
||||
----------
|
||||
|
||||
- `llvm.core.User <llvm.core.User.html>`_
|
||||
|
||||
Properties
|
||||
----------
|
||||
|
||||
``basic_block``
|
||||
~~~~~~~~~~~~~~~
|
||||
|
||||
[read-only] The basic block to which this instruction belongs to.
|
||||
|
||||
``is_terminator``
|
||||
~~~~~~~~~~~~~~~~~
|
||||
|
||||
[read-only] True if the instruction is a terminator instruction.
|
||||
|
||||
``is_binary_op``
|
||||
~~~~~~~~~~~~~~~~
|
||||
|
||||
[read-only] True if the instruction is a binary operator.
|
||||
|
||||
``is_shift``
|
||||
~~~~~~~~~~~~
|
||||
|
||||
[read-only] True if the instruction is a shift instruction.
|
||||
|
||||
``is_cast``
|
||||
~~~~~~~~~~~
|
||||
|
||||
[read-only] True if the instruction is a cast instruction.
|
||||
|
||||
``is_logical_shift``
|
||||
~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
[read-only] True if the instruction is a logical shift instruction.
|
||||
|
||||
``is_arithmetic_shift``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
[read-only] True if the instruction is an arithmetic shift instruction.
|
||||
|
||||
``is_associative``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
|
||||
[read-only] True if the instruction is associative.
|
||||
|
||||
``is_commutative``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
|
||||
[read-only] True if the instruction is commutative.
|
||||
|
||||
``is_volatile``
|
||||
~~~~~~~~~~~~~~~
|
||||
|
||||
[read-only] True if the instruction is a volatile load or store.
|
||||
|
||||
``opcode``
|
||||
~~~~~~~~~~
|
||||
|
||||
[read-only] The numeric opcode value of the instruction. Do not rely on
|
||||
the absolute value of this number, it may change with LLVM version.
|
||||
|
||||
``opcode_name``
|
||||
~~~~~~~~~~~~~~~
|
||||
|
||||
[read-only] The name of the instruction, like ``add``, ``sub`` etc.
|
||||
|
||||
--------------
|
||||
|
||||
llvm.core.CallOrInvokeInstruction
|
||||
=================================
|
||||
|
||||
The ``llvm.core.CallOrInvokeInstruction`` is a subclass of
|
||||
``llvm.core.Instruction``, and represents either a ``call`` or an
|
||||
``invoke`` instruction.
|
||||
|
||||
Base Class
|
||||
----------
|
||||
|
||||
- ``llvm.core.Instruction``
|
||||
|
||||
Properties
|
||||
----------
|
||||
|
||||
``calling_convention`` Get or set the calling convention. See
|
||||
`here <functions.html#callconv>`_ for possible values.
|
||||
|
||||
Methods
|
||||
-------
|
||||
|
||||
``add_parameter_attribute(idx, attr)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Add an attribute ``attr`` to the ``idx``-th argument. See
|
||||
`here <llvm.core.Argument.html>`_ for possible values of ``attr``.
|
||||
|
||||
``remove_parameter_attribute(idx, attr)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Remove an attribute ``attr`` from the ``idx``-th argument. See
|
||||
`here <llvm.core.Argument.html>`_ for possible values of ``attr``.
|
||||
|
||||
``set_parameter_alignment(idx, align)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Set the alignment of the ``idx``-th argument to ``align``. ``align``
|
||||
should be a power of two.
|
||||
|
||||
--------------
|
||||
|
||||
llvm.core.PHINode
|
||||
=================
|
||||
|
||||
The ``llvm.core.PHINode`` is a subclass of ``llvm.core.Instruction``,
|
||||
and represents the ``phi`` instruction. When created (using
|
||||
``Builder.phi``) the phi node contains no incoming blocks (nor their
|
||||
corresponding values). To add an incoming arc to the phi node, use the
|
||||
``add_incoming`` method, which takes a source block
|
||||
(`llvm.core.BasicBlock <llvm.core.BasicBlock.html>`_ object) and a value
|
||||
(object of `llvm.core.Value <llvm.core.Value.html>`_ or of a class
|
||||
derived from it) that the phi node will take on if control branches in
|
||||
from that block.
|
||||
|
||||
Base Class
|
||||
----------
|
||||
|
||||
- ``llvm.core.Instruction``
|
||||
|
||||
Properties
|
||||
----------
|
||||
|
||||
``incoming_count`` [read-only] The number of incoming arcs for this phi
|
||||
node.
|
||||
|
||||
Methods
|
||||
-------
|
||||
|
||||
``add_incoming(value, block)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Add an incoming arc, from the
|
||||
`llvm.core.BasicBlock <llvm.core.BasicBlock.html>`_ object ``block``,
|
||||
with the corresponding value ``value``. ``value`` should be an object of
|
||||
`llvm.core.Value <llvm.core.Value.html>`_ (or of a descendent class).
|
||||
|
||||
``get_incoming_value(idx)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Returns the ``idx``-th incoming arc's value.
|
||||
|
||||
``get_incoming_block(idx)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Returns the ``idx``-th incoming arc's block.
|
||||
|
||||
llvm.core.SwitchInstruction # {#switchinstr}
|
||||
============================================
|
||||
|
||||
(TODO describe)
|
||||
|
||||
Base Class
|
||||
----------
|
||||
|
||||
- ``llvm.core.Instruction``
|
||||
|
||||
Methods
|
||||
-------
|
||||
|
||||
``add_case(const, block)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Add another case to the switch statement. When the expression being
|
||||
evaluated equals ``const``, then control branches to ``block``. Here
|
||||
``const`` must be of type
|
||||
`llvm.core.ConstantInt <llvm.core.Constant.html>`_.
|
||||
|
||||
--------------
|
||||
|
||||
llvm.core.CompareInstruction
|
||||
============================
|
||||
|
||||
(TODO describe)
|
||||
|
||||
Base Class
|
||||
----------
|
||||
|
||||
- ``llvm.core.Instruction``
|
||||
|
||||
Properties
|
||||
----------
|
||||
|
||||
``predicate``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
The predicate of the compare instruction, one of the ``ICMP_*`` or
|
||||
``FCMP_*`` constants.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.Instruction
|
||||
:members:
|
||||
:undoc-members:
|
||||
30
docs/source/doc/llvm.core.IntegerType.rst
Normal file
30
docs/source/doc/llvm.core.IntegerType.rst
Normal file
|
|
@ -0,0 +1,30 @@
|
|||
+----------------------------------+
|
||||
| layout: page |
|
||||
+----------------------------------+
|
||||
| title: IntegerType (llvm.core) |
|
||||
+----------------------------------+
|
||||
|
||||
llvm.core.IntegerType
|
||||
=====================
|
||||
|
||||
Base Class
|
||||
----------
|
||||
|
||||
- `llvm.core.Type <llvm.core.Type.html>`_
|
||||
|
||||
Properties
|
||||
----------
|
||||
|
||||
``width``
|
||||
~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
The width of the integer type, in number of bits.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.IntegerType
|
||||
:members:
|
||||
:undoc-members:
|
||||
29
docs/source/doc/llvm.core.Module.rst
Normal file
29
docs/source/doc/llvm.core.Module.rst
Normal file
|
|
@ -0,0 +1,29 @@
|
|||
+-----------------------------+
|
||||
| layout: page |
|
||||
+-----------------------------+
|
||||
| title: Module (llvm.core) |
|
||||
+-----------------------------+
|
||||
|
||||
llvm.core.Module
|
||||
================
|
||||
|
||||
Modules are top-level container objects. You need to create a module
|
||||
object first, before you can add global variables, aliases or functions.
|
||||
Modules are created using the static method ``Module.new``:
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
#!/usr/bin/env python
|
||||
|
||||
from llvm import *
|
||||
from llvm.core import *
|
||||
|
||||
# create a module
|
||||
my_module = Module.new('my_module')
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.Module
|
||||
:members:
|
||||
:undoc-members:
|
||||
38
docs/source/doc/llvm.core.PointerType.rst
Normal file
38
docs/source/doc/llvm.core.PointerType.rst
Normal file
|
|
@ -0,0 +1,38 @@
|
|||
+----------------------------------+
|
||||
| layout: page |
|
||||
+----------------------------------+
|
||||
| title: PointerType (llvm.core) |
|
||||
+----------------------------------+
|
||||
|
||||
llvm.core.PointerType
|
||||
=====================
|
||||
|
||||
Base Class
|
||||
----------
|
||||
|
||||
- `llvm.core.Type <llvm.core.Type.html>`_
|
||||
|
||||
Properties
|
||||
----------
|
||||
|
||||
``address_space``
|
||||
~~~~~~~~~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
The address space of the pointer.
|
||||
|
||||
``pointee``
|
||||
~~~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
A `Type <llvm.core.Type.html>`_ object representing the type of the
|
||||
value pointed to.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.PointerType
|
||||
:members:
|
||||
:undoc-members:
|
||||
8
docs/source/doc/llvm.core.StructType.rst
Normal file
8
docs/source/doc/llvm.core.StructType.rst
Normal file
|
|
@ -0,0 +1,8 @@
|
|||
llvm.core.StructType
|
||||
====================
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.StructType
|
||||
:members:
|
||||
:undoc-members:
|
||||
135
docs/source/doc/llvm.core.Type.rst
Normal file
135
docs/source/doc/llvm.core.Type.rst
Normal file
|
|
@ -0,0 +1,135 @@
|
|||
+---------------------------+
|
||||
| layout: page |
|
||||
+---------------------------+
|
||||
| title: Type (llvm.core) |
|
||||
+---------------------------+
|
||||
|
||||
llvm.core.Type
|
||||
==============
|
||||
|
||||
- This will become a table of contents (this text will be scraped).
|
||||
{:toc}
|
||||
|
||||
Static Constructors
|
||||
-------------------
|
||||
|
||||
``int(n)``
|
||||
~~~~~~~~~~
|
||||
|
||||
Create an integer type of bit width ``n``.
|
||||
|
||||
``float()``
|
||||
~~~~~~~~~~~
|
||||
|
||||
Create a 32-bit floating point type.
|
||||
|
||||
``double()``
|
||||
~~~~~~~~~~~~
|
||||
|
||||
Create a 64-bit floating point type.
|
||||
|
||||
``x86_fp80()``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Create a 80-bit 80x87-style floating point type.
|
||||
|
||||
``fp128()``
|
||||
~~~~~~~~~~~
|
||||
|
||||
Create a 128-bit floating point type (112-bit mantissa).
|
||||
|
||||
``ppc_fp128()``
|
||||
~~~~~~~~~~~~~~~
|
||||
|
||||
Create a 128-bit float (two 64-bits).
|
||||
|
||||
``function(ret, params, vararg=False)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Create a function type, having the return type ``ret`` (must be a
|
||||
``Type``), accepting the parameters ``params``, where ``params`` is an
|
||||
iterable, that yields ``Type`` objects representing the type of each
|
||||
function argument in order. If ``vararg`` is ``True``, function is
|
||||
variadic.
|
||||
|
||||
``struct(eltys, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Create an unpacked structure. ``eltys`` is an iterable, that yields
|
||||
``Type`` objects representing the type of each element in order.
|
||||
|
||||
If ``name`` is evaulates ``True`` (not empty), create an *identified
|
||||
structure*; otherwise, create a *literal structure* by default.
|
||||
|
||||
``packed_struct(eltys, name='')``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Like ``struct(eltys)``, but creates a packed struct.
|
||||
|
||||
``array(elty, count)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Creates an array type, holding ``count`` elements, each of type ``elty``
|
||||
(which should be a ``Type``).
|
||||
|
||||
``pointer(pty, addrspc=0)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Create a pointer to type ``pty`` (which should be a ``Type``).
|
||||
``addrspc`` is an integer that represents the address space of the
|
||||
pointer (see LLVM docs or ask on llvm-dev for more info).
|
||||
|
||||
``void()``
|
||||
~~~~~~~~~~
|
||||
|
||||
Creates a void type. Used for function return types.
|
||||
|
||||
``label()``
|
||||
~~~~~~~~~~~
|
||||
|
||||
Creates a label type.
|
||||
|
||||
``opaque(name)``
|
||||
~~~~~~~~~~~~~~~~
|
||||
|
||||
Opaque `StructType <llvm.core.StructType.html>`_, used for creating
|
||||
self-referencing types.
|
||||
|
||||
Properties
|
||||
----------
|
||||
|
||||
``kind``
|
||||
~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
A value (enum) representing the "type" of the object. It will be one of
|
||||
the following constants defined in ``llvm.core``:
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
# Warning: do not rely on actual numerical
|
||||
values! TYPE_VOID = 0 TYPE_FLOAT = 1 TYPE_DOUBLE = 2 TYPE_X86_FP80
|
||||
= 3 TYPE_FP128 = 4 TYPE_PPC_FP128 = 5 TYPE_LABEL = 6 TYPE_INTEGER =
|
||||
7 TYPE_FUNCTION = 8 TYPE_STRUCT = 9 TYPE_ARRAY = 10 TYPE_POINTER =
|
||||
11 TYPE_OPAQUE = 12 TYPE_VECTOR = 13 TYPE_METADATA = 14 TYPE_UNION =
|
||||
15
|
||||
|
||||
|
||||
|
||||
Example:
|
||||
^^^^^^^^
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
assert Type.int().kind == TYPE_INTEGER assert
|
||||
Type.void().kind == TYPE_VOID
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.Type
|
||||
:members:
|
||||
:undoc-members:
|
||||
46
docs/source/doc/llvm.core.User.rst
Normal file
46
docs/source/doc/llvm.core.User.rst
Normal file
|
|
@ -0,0 +1,46 @@
|
|||
+---------------------------+
|
||||
| layout: page |
|
||||
+---------------------------+
|
||||
| title: User (llvm.core) |
|
||||
+---------------------------+
|
||||
|
||||
``User``-s are values that refer to other values. The values so refered
|
||||
can be retrived by the properties of ``User``. This is the reverse of
|
||||
the ``Value.uses``. Together these can be used to traverse the use-def
|
||||
chains of the SSA.
|
||||
|
||||
--------------
|
||||
|
||||
llvm.core.User # {#user}
|
||||
========================
|
||||
|
||||
Base Class
|
||||
----------
|
||||
|
||||
- `llvm.core.Value <llvm.core.Value.html>`_
|
||||
|
||||
Properties
|
||||
----------
|
||||
|
||||
``operands``
|
||||
~~~~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
The list of operands (values, of type
|
||||
`llvm.core.Value <llvm.core.Value.html>`_) that this value refers to.
|
||||
|
||||
``operand_count``
|
||||
~~~~~~~~~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
The number of operands that this value referes to. Same as
|
||||
``len(uses.operands)`` but faster if you just want the count.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.User
|
||||
:members:
|
||||
:undoc-members:
|
||||
72
docs/source/doc/llvm.core.Value.rst
Normal file
72
docs/source/doc/llvm.core.Value.rst
Normal file
|
|
@ -0,0 +1,72 @@
|
|||
+----------------------------+
|
||||
| layout: page |
|
||||
+----------------------------+
|
||||
| title: Value (llvm.core) |
|
||||
+----------------------------+
|
||||
|
||||
llvm.core.Value
|
||||
===============
|
||||
|
||||
- This will become a table of contents (this text will be scraped).
|
||||
{:toc}
|
||||
|
||||
Properties
|
||||
----------
|
||||
|
||||
``name``
|
||||
~~~~~~~~
|
||||
|
||||
The name of the value.
|
||||
|
||||
``type``
|
||||
~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
An ``llvm.core.Type`` object representing the type of the value.
|
||||
|
||||
``uses``
|
||||
~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
The list of values (``llvm.core.Value``) that use this value.
|
||||
|
||||
``use_count``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
The number of values that use (refer) this value. Same as
|
||||
``len(val.uses)`` but faster if you just want the count.
|
||||
|
||||
``value_id``
|
||||
~~~~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
Returns ``llvmValuegetValueID()``. Refer LLVM documentation for more
|
||||
info.
|
||||
|
||||
Special Methods
|
||||
---------------
|
||||
|
||||
``__str__``
|
||||
~~~~~~~~~~~
|
||||
|
||||
``Value`` objects can be stringified into it's LLVM assembly language
|
||||
representation.
|
||||
|
||||
``__eq__``
|
||||
~~~~~~~~~~
|
||||
|
||||
``Value`` objects can be compared for equality. Internally, this
|
||||
converts both arguments into their LLVM assembly representations and
|
||||
compares the resultant strings.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.Value
|
||||
:members:
|
||||
:undoc-members:
|
||||
38
docs/source/doc/llvm.core.VectorType.rst
Normal file
38
docs/source/doc/llvm.core.VectorType.rst
Normal file
|
|
@ -0,0 +1,38 @@
|
|||
+---------------------------------+
|
||||
| layout: page |
|
||||
+---------------------------------+
|
||||
| title: VectorType (llvm.core) |
|
||||
+---------------------------------+
|
||||
|
||||
llvm.core.VectorType
|
||||
====================
|
||||
|
||||
Base Class
|
||||
----------
|
||||
|
||||
- `llvm.core.Type <llvm.core.Type.html>`_
|
||||
|
||||
Properties
|
||||
----------
|
||||
|
||||
``element``
|
||||
~~~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
A `Type <llvm.core.Type.html>`_ object representing the type of the
|
||||
element of the vector.
|
||||
|
||||
``count``
|
||||
~~~~~~~~~
|
||||
|
||||
[read-only]
|
||||
|
||||
The number of elements in the vector.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.VectorType
|
||||
:members:
|
||||
:undoc-members:
|
||||
56
docs/source/doc/llvm.ee.EngineBuilder.rst
Normal file
56
docs/source/doc/llvm.ee.EngineBuilder.rst
Normal file
|
|
@ -0,0 +1,56 @@
|
|||
+----------------------------------+
|
||||
| layout: page |
|
||||
+----------------------------------+
|
||||
| title: EngineBuilder (llvm.ee) |
|
||||
+----------------------------------+
|
||||
|
||||
llvm.ee.EngineBuilder
|
||||
=====================
|
||||
|
||||
A convenient class for building
|
||||
`llvm.ee.ExecutionEngine <llvm.ee.ExecutionEngine.html>`_. Each
|
||||
``EngineBuilder`` instance can only create one ``ExecutionEngine``.
|
||||
|
||||
Methods
|
||||
-------
|
||||
|
||||
``create(self)``
|
||||
~~~~~~~~~~~~~~~~
|
||||
|
||||
Create and return a new
|
||||
`ExecutionEngine <llvm.ee.ExecutionEngine.html>`_ instance.
|
||||
|
||||
Raise ``llvm.LLVMException`` if the builder cannot create an
|
||||
``ExecutionEngine`` base on the given configuration.
|
||||
|
||||
``force_interpreter(self)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Force the output the output ``ExecutionEngine`` to be an LLVM IR
|
||||
interpreter.
|
||||
|
||||
``force_jit(self)``
|
||||
~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Force the output the output ``ExecutionEngine`` to be a JIT engine.
|
||||
|
||||
``opt(self, level)``
|
||||
~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Set the code generation optimization level for a JIT engine. Valid value
|
||||
of ``level`` is 0-3, inclusive. The default setting is 2. To use vector
|
||||
instructions, such as SSE on Intel processors, ``level`` must be 3
|
||||
(aggressive).
|
||||
|
||||
Static Factory Methods
|
||||
----------------------
|
||||
|
||||
``new(module)``
|
||||
~~~~~~~~~~~~~~~
|
||||
|
||||
Create a new EngineBuilder. ``module`` must be a
|
||||
`llvm.core.Module <llvm.core.Module.html>`_ instance. Its ownership is
|
||||
transferred to the resulting
|
||||
`ExecutionEngine <llvm.ee.ExecutionEngine.html>`_. Therefore, it is
|
||||
impossible to create more than one ``ExecutionEngine`` with a single
|
||||
``EngineBuilder``
|
||||
62
docs/source/doc/llvm.ee.ExecutionEngine.rst
Normal file
62
docs/source/doc/llvm.ee.ExecutionEngine.rst
Normal file
|
|
@ -0,0 +1,62 @@
|
|||
+------------------------------------+
|
||||
| layout: page |
|
||||
+------------------------------------+
|
||||
| title: ExecutionEngine (llvm.ee) |
|
||||
+------------------------------------+
|
||||
|
||||
llvm.ee.ExecutionEngine
|
||||
=======================
|
||||
|
||||
Methods
|
||||
-------
|
||||
|
||||
``add_module(self, module)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Add a new module to the ExecutionEngine. The ownership is of ``module``
|
||||
is transferred. When the ``ExecutionEngine`` is destroyed, the module is
|
||||
destroyed.
|
||||
|
||||
``free_machine_code_for(self, fn)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Release memory used for the machine code generated for the function
|
||||
``fn``.
|
||||
|
||||
``get_pointer_to_function(self, fn)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Obtain the pointer to the function ``fn``. This forces the
|
||||
ExecutionEngine to generate the machine code in lazy mode.
|
||||
|
||||
If ``fn`` is not defined, ``ExecutionEngine`` will lookup the symbol
|
||||
through ``dlsym``.
|
||||
|
||||
The returned function pointer can be wrapped as a ``ctypes`` function.
|
||||
|
||||
``remove_module(self, module)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Remove the ``module``.
|
||||
|
||||
``run_function(self, fn, args)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Execute the function ``fn`` with an iterable of arguments ``args`` which
|
||||
are of ``GenericValue``. This method returns whatever that is returned
|
||||
by ``fn`` as a ``GenericValue``.
|
||||
|
||||
``run_static_ctors(self)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
``run_static_dtors(self)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Properties
|
||||
----------
|
||||
|
||||
``target_data``
|
||||
~~~~~~~~~~~~~~~
|
||||
|
||||
Access the `TargetData <llvm.ee.TargetData.html>`_ instance associated
|
||||
with the ``ExecutionEngine``.
|
||||
64
docs/source/doc/llvm.ee.GenericValue.rst
Normal file
64
docs/source/doc/llvm.ee.GenericValue.rst
Normal file
|
|
@ -0,0 +1,64 @@
|
|||
+---------------------------------+
|
||||
| layout: page |
|
||||
+---------------------------------+
|
||||
| title: GenericValue (llvm.ee) |
|
||||
+---------------------------------+
|
||||
|
||||
llvm.ee.GenericValue
|
||||
====================
|
||||
|
||||
- This will become a table of contents (this text will be scraped).
|
||||
{:toc}
|
||||
|
||||
Methods
|
||||
-------
|
||||
|
||||
``as_int(self)``
|
||||
~~~~~~~~~~~~~~~~
|
||||
|
||||
Return the value of this ``GenericValue`` instance as an unsigned
|
||||
integer
|
||||
|
||||
``as_int_signed(self)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Return the value of this ``GenericValue`` instance as a signed integer.
|
||||
|
||||
``as_pointer(self)``
|
||||
~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Return the value of this ``GenericValue`` instance as a pointer. The
|
||||
type of the return value is ``int``.
|
||||
|
||||
``as_real(self, ty)``
|
||||
~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Return the value of this ``GenericValue`` instance as a real number
|
||||
which type is specified by ``ty``. ``ty`` must be a
|
||||
`Type <llvm.core.Type.html>`_ instance of a real number type.
|
||||
|
||||
Static Factory Methods
|
||||
----------------------
|
||||
|
||||
``int(ty, intval)``
|
||||
~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Create a ``GenericValue`` instance with a ``int`` value, which is
|
||||
zero-extended if necessary. The type of the value is specified by
|
||||
``ty``, which is a `Type <llvm.core.Type.html>`_ instance.
|
||||
|
||||
``int_signed(ty, intval)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Create a ``GenericValue`` instance with a ``int`` value, which is
|
||||
sign-extended if necessary. The type of the value is specified by
|
||||
``ty``, which is a `Type <llvm.core.Type.html>`_ instance.
|
||||
|
||||
``pointer(ty, addr)`` or ``pointer(addr)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Create a ``GenericValue`` instance with a ``int`` value, which is
|
||||
representing a pointer value.
|
||||
|
||||
The two argument version is **deprecated**. The old code never used
|
||||
``ty`` anyway.
|
||||
70
docs/source/doc/llvm.ee.TargetData.rst
Normal file
70
docs/source/doc/llvm.ee.TargetData.rst
Normal file
|
|
@ -0,0 +1,70 @@
|
|||
+-------------------------------+
|
||||
| layout: page |
|
||||
+-------------------------------+
|
||||
| title: TargetData (llvm.ee) |
|
||||
+-------------------------------+
|
||||
|
||||
llvm.ee.TargetData
|
||||
==================
|
||||
|
||||
- This will become a table of contents (this text will be scraped).
|
||||
{:toc}
|
||||
|
||||
Methods
|
||||
-------
|
||||
|
||||
``abi_alignment(self, ty)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Returns the minimum ABI-required alignment for the specified type
|
||||
``ty``.
|
||||
|
||||
``abi_size(self, ty)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
``callframe_alignment(self, ty)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Returns the minimum ABI-required alignment for the specified type ``ty``
|
||||
when it is part of a call frame.
|
||||
|
||||
``element_at_offset(self, ty, ofs)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
``offset_of_element(self, ty, el)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
``preferred_alignment(self, ty_or_gv)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
``size(self, ty)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
|
||||
``store_size(self, ty)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
``__str__(self)``
|
||||
~~~~~~~~~~~~~~~~~
|
||||
|
||||
Returns the string representation.
|
||||
|
||||
Static Factory Methods
|
||||
----------------------
|
||||
|
||||
``new(strrep)``
|
||||
~~~~~~~~~~~~~~~
|
||||
|
||||
Construct a new ``TargetData`` instance from the string representation
|
||||
|
||||
Properties
|
||||
----------
|
||||
|
||||
``byte_order``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
``pointer_size``
|
||||
~~~~~~~~~~~~~~~~
|
||||
|
||||
``target_integer_type``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
42
docs/source/doc/llvm.passes.FunctionPassManager.rst
Normal file
42
docs/source/doc/llvm.passes.FunctionPassManager.rst
Normal file
|
|
@ -0,0 +1,42 @@
|
|||
+--------------------------------------------+
|
||||
| layout: page |
|
||||
+--------------------------------------------+
|
||||
| title: FunctionPassManager (llvm.passes) |
|
||||
+--------------------------------------------+
|
||||
|
||||
llvm.passes.FunctionPassManager
|
||||
===============================
|
||||
|
||||
Base Classes
|
||||
------------
|
||||
|
||||
- `llvm.passes.PassManager <llvm.passes.PassManager.html>`_
|
||||
|
||||
Methods
|
||||
-------
|
||||
|
||||
``finalize(self)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Finalizes all associated function passes in the LLVM system.
|
||||
|
||||
Beware that this destroys all associated passes even if another pass
|
||||
manager is using those passes. This may result is a segfault.
|
||||
|
||||
``initialize(self)``
|
||||
~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Initializes all associated function passes in the LLVM system.
|
||||
|
||||
``run(self, fn)``
|
||||
~~~~~~~~~~~~~~~~~
|
||||
|
||||
Run all passes on the given function ``fn``.
|
||||
|
||||
Static Factory Methods
|
||||
----------------------
|
||||
|
||||
``new(module)``
|
||||
~~~~~~~~~~~~~~~
|
||||
|
||||
Create a ``FunctionPassManager`` instance for a given ``module``.
|
||||
29
docs/source/doc/llvm.passes.PassManager.rst
Normal file
29
docs/source/doc/llvm.passes.PassManager.rst
Normal file
|
|
@ -0,0 +1,29 @@
|
|||
+------------------------------------+
|
||||
| layout: page |
|
||||
+------------------------------------+
|
||||
| title: PassManager (llvm.passes) |
|
||||
+------------------------------------+
|
||||
|
||||
llvm.passes.PassManager
|
||||
=======================
|
||||
|
||||
Methods
|
||||
-------
|
||||
|
||||
``add(self, tgt_data_or_pass_id)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Add a pass by its ID. A pass IDs are defined as ``PASS_*``.
|
||||
|
||||
``run(self, module)``
|
||||
~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Run all passes on the given ``module``.
|
||||
|
||||
Static Factory Methods
|
||||
----------------------
|
||||
|
||||
``new()``
|
||||
~~~~~~~~~
|
||||
|
||||
Creates a new ``PassManager`` instance.
|
||||
72
docs/source/doc/llvm.passes.PassManagerBuilder.rst
Normal file
72
docs/source/doc/llvm.passes.PassManagerBuilder.rst
Normal file
|
|
@ -0,0 +1,72 @@
|
|||
+-------------------------------------------+
|
||||
| layout: page |
|
||||
+-------------------------------------------+
|
||||
| title: PassManagerBuilder (llvm.passes) |
|
||||
+-------------------------------------------+
|
||||
|
||||
llvm.passes.PassManagerBuilder
|
||||
==============================
|
||||
|
||||
Provide a simple API to populate pass managers for language like C/C++.
|
||||
Refer to `LLVM API
|
||||
Documentation <http://llvm.org/docs/doxygen/html/classllvm_1_1PassManagerBuilder.html>`_
|
||||
for detail.
|
||||
|
||||
Methods
|
||||
-------
|
||||
|
||||
``populate(self, pm)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Populate a `FunctionPassManager <llvm.passes.FunctionPassManager.html>`_
|
||||
or `PassManager <llvm.passes.PassManager.html>`_ given as ``pm``.
|
||||
|
||||
``use_inliner_with_threshold(self, threshold)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Use an inliner pass with the given ``threshold``.
|
||||
|
||||
Properties
|
||||
----------
|
||||
|
||||
The following properties can be overriden to customize how pass managers
|
||||
are populated.
|
||||
|
||||
``disable_simplify_lib_calls``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Boolean. Default is ``False``.
|
||||
|
||||
``disable_unit_at_a_time``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Boolean. Default is ``False``.
|
||||
|
||||
``disable_unroll_loops``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Boolean. Default is ``False``.
|
||||
|
||||
``opt_level``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
Default is ``2``. Valid values are 0-3. Corresponds to O0, O1, O2, O3 as
|
||||
in C/C++ optimization options.
|
||||
|
||||
``size_level``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Default is ``0``.
|
||||
|
||||
``vectorize``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
Default is ``False``.
|
||||
|
||||
Static Factory Methods
|
||||
----------------------
|
||||
|
||||
``new()``
|
||||
~~~~~~~~~
|
||||
|
||||
Creates a new ``PassManagerBuilder`` instance.
|
||||
12
docs/source/doc/llvm_cbuilder.rst
Normal file
12
docs/source/doc/llvm_cbuilder.rst
Normal file
|
|
@ -0,0 +1,12 @@
|
|||
llvm_cbuilder
|
||||
=============
|
||||
|
||||
llvm_cbuilder is a set of Python-contexts you can use to write C-like
|
||||
constructs in Python which generates llvmpy code directly.
|
||||
|
||||
Similar to llpython it allows you to build llvm IR without using the
|
||||
llvmpy interface directly.
|
||||
|
||||
Look in the llvm_cbuilder tests directory for examples of use.
|
||||
|
||||
|
||||
239
docs/source/doc/llvm_concepts.rst
Normal file
239
docs/source/doc/llvm_concepts.rst
Normal file
|
|
@ -0,0 +1,239 @@
|
|||
********************
|
||||
LLVM Concepts
|
||||
********************
|
||||
|
||||
This section explains a few concepts related to LLVM, not specific to
|
||||
llvmpy.
|
||||
|
||||
.. toctree::
|
||||
:hidden:
|
||||
|
||||
|
||||
|
||||
|
||||
Intermediate Representation
|
||||
===========================
|
||||
|
||||
The intermediate representation, or IR for short, is an in-memory data
|
||||
structure that represents executable code. The IR data structures allow
|
||||
for creation of types, constants, functions, function arguments,
|
||||
instructions, global variables and so on. For example, to create a
|
||||
function *sum* that takes two integers and returns their sum, we need to
|
||||
follow these steps:
|
||||
|
||||
- create an integer type *ti* of required bitwidth
|
||||
- create a function type *tf* which takes two *ti* -s and returns
|
||||
another *ti*
|
||||
- create a function of type *tf* named *sum*
|
||||
- add a *basic block* to the function
|
||||
- using a helper object called an *instruction builder*, add two
|
||||
instructions into the basic block:
|
||||
|
||||
- an instruction to add the two
|
||||
arguments and store the result into a temporary variable
|
||||
- a return
|
||||
instruction to return the value of the temporary variable
|
||||
|
||||
(A basic block is a block of instructions.)
|
||||
|
||||
LLVM has it's own instruction set; the instructions used above (*add*
|
||||
and *ret*) are from this set. The LLVM instructions are at a higher
|
||||
level than the usual assembly language; for example there are
|
||||
instructions related to variable argument handling, exception handling,
|
||||
and garbage collection. These allow high-level languages to be
|
||||
represented cleanly in the IR.
|
||||
|
||||
|
||||
SSA Form and PHI Nodes
|
||||
======================
|
||||
|
||||
All LLVM instructions are represented in the *Static Single Assignment*
|
||||
(SSA) form. Essentially, this means that any variable can be assigned to
|
||||
only once. Such a representation facilitates better optimization, among
|
||||
other benefits.
|
||||
|
||||
A consequence of single assignment are PHI (Φ) nodes. These are required
|
||||
when a variable can be assigned a different value based on the path of
|
||||
control flow. For example, the value of *b* at the end of execution of
|
||||
the snippet below:
|
||||
|
||||
.. code-block:: c
|
||||
|
||||
a = 1;
|
||||
if (v < 10)
|
||||
a = 2;
|
||||
b = a;
|
||||
|
||||
cannot be determined statically. The value of '2' cannot be assigned to
|
||||
the 'original' *a*, since *a* can be assigned to only once. There are
|
||||
two *a* 's in there, and the last assignment has to choose between which
|
||||
version to pick. This is accomplished by adding a PHI node:
|
||||
|
||||
.. code-block:: c
|
||||
|
||||
a1 = 1;
|
||||
if (v < 10)
|
||||
a2 = 2;
|
||||
b = PHI(a1, a2);
|
||||
|
||||
The PHI node selects *a1* or *a2*, depending on where the control
|
||||
reached the PHI node. The argument *a1* of the PHI node is associated
|
||||
with the block *"a1 = 1;"* and *a2* with the block *"a2 = 2;"*.
|
||||
|
||||
PHI nodes have to be explicitly created in the LLVM IR. Accordingly the
|
||||
LLVM instruction set has an instruction called *phi*.
|
||||
|
||||
|
||||
LLVM Assembly Language
|
||||
======================
|
||||
|
||||
The LLVM IR can be represented offline in two formats
|
||||
|
||||
- a textual, human-readable form, similar to assembly language, called
|
||||
the LLVM assembly language (files with .ll extension)
|
||||
- a binary form, called the LLVM bitcode (files with .bc extension)
|
||||
|
||||
All three formats (the in-memory IR, the LLVM assembly language and the
|
||||
LLVM bitcode) represent the *same* information. Each format can be
|
||||
converted into the other two formats (using LLVM APIs).
|
||||
|
||||
The `LLVM demo page <http://www.llvm.org/demo/>`_ lets you type in C or
|
||||
C++ code, converts it into LLVM IR and outputs the IR as LLVM assembly
|
||||
language code.
|
||||
|
||||
Just to get a feel of the LLVM assembly language, here's a function in
|
||||
C, and the corresponding LLVM assembly (as generated by the demo page):
|
||||
|
||||
.. code-block:: c
|
||||
|
||||
/* compute sum of 1..n */
|
||||
unsigned sum(unsigned n) {
|
||||
if (n == 0)
|
||||
return 0;
|
||||
else
|
||||
return n + sum(n-1);
|
||||
}
|
||||
|
||||
The corresponding LLVM assembly:
|
||||
|
||||
.. code-block:: llvm
|
||||
|
||||
; ModuleID = '/tmp/webcompile/_7149_0.bc'
|
||||
target datalayout = "e-p:64:64:64-i1:8:8-i8:8:8-i16:16:16-i32:32:32-i64:64:64-f32:32:32-f64:64:64-v64:64:64-v128:128:128-a0:0:64-s0:64:64-f80:128:128-n8:16:32:64"
|
||||
target triple = "x86_64-linux-gnu"
|
||||
|
||||
define i32 @sum(i32 %n) nounwind readnone {
|
||||
entry:
|
||||
%0 = icmp eq i32 %n, 0 ; [#uses=1]
|
||||
br i1 %0, label %bb2, label %bb1
|
||||
|
||||
bb1: ; preds = %entry
|
||||
%1 = add i32 %n, -1 ; [#uses=2]
|
||||
%2 = icmp eq i32 %1, 0 ; [#uses=1]
|
||||
br i1 %2, label %sum.exit, label %bb1.i
|
||||
|
||||
bb1.i: ; preds = %bb1
|
||||
%3 = add i32 %n, -2 ; [#uses=1]
|
||||
%4 = tail call i32 @sum(i32 %3) nounwind ; [#uses=1]
|
||||
%5 = add i32 %4, %1 ; [#uses=1]
|
||||
br label %sum.exit
|
||||
|
||||
sum.exit: ; preds = %bb1.i, %bb1
|
||||
%6 = phi i32 [ %5, %bb1.i ], [ 0, %bb1 ] ; [#uses=1]
|
||||
%7 = add i32 %6, %n ; [#uses=1]
|
||||
ret i32 %7
|
||||
|
||||
bb2: ; preds = %entry
|
||||
ret i32 0
|
||||
}
|
||||
|
||||
Note the usage of SSA form. The long string called ``target datalayout``
|
||||
is a specification of the platform ABI (like endianness, sizes of types,
|
||||
alignment etc.).
|
||||
|
||||
The `LLVM Language Reference <http://www.llvm.org/docs/LangRef.html>`_
|
||||
defines the LLVM assembly language including the entire instruction set.
|
||||
|
||||
|
||||
Modules
|
||||
=======
|
||||
|
||||
`Modules <./llvm.core.Module.html>`_, in the LLVM IR, are similar to a
|
||||
single *C* language source file (.c file). A module contains:
|
||||
|
||||
- functions (declarations and definitions)
|
||||
- global variables and constants
|
||||
- global type aliases for structures
|
||||
|
||||
Modules are top-level containers; all executable code representation is
|
||||
contained within modules. Modules may be combined (linked) together to
|
||||
give a bigger resultant module. During this process LLVM attempts to
|
||||
reconcile the references between the combined modules.
|
||||
|
||||
|
||||
Optimization and Passes
|
||||
=======================
|
||||
|
||||
LLVM provides quite a few optimization algorithms that work on the IR.
|
||||
These algorithms are organized as *passes*. Each pass does something
|
||||
specific, like combining redundant instructions. Passes need not always
|
||||
optimize the IR, it can also do other operations like inserting
|
||||
instrumentation code, or analyzing the IR (the result of which can be
|
||||
used by passes that do optimizations) or even printing call graphs.
|
||||
|
||||
This LLVM `documentation page <http://www.llvm.org/docs/Passes.html>`_
|
||||
describes all the available passes, and what they do.
|
||||
|
||||
LLVM does not automatically choose to run any passes, anytime. Passes
|
||||
have to be explicitly selected and run on each module. This gives you
|
||||
the flexibility to choose transformations and optimizations that are
|
||||
most suitable for the code in the module.
|
||||
|
||||
There is an LLVM binary called
|
||||
`opt <http://www.llvm.org/cmds/opt.html>`_, which lets you run passes on
|
||||
bitcode files from the command line. You can write your own passes (in
|
||||
C/C++, as a shared library). This can be loaded and executed by +opt+.
|
||||
(Although llvmpy does not allow you to write your own passes, it does
|
||||
allow you to navigate the entire IR at any stage, and perform any
|
||||
transforms on it as you like.)
|
||||
|
||||
A "pass manager" is responsible for loading passes, selecting the
|
||||
correct objects to run them on (for example, a pass may work only on
|
||||
functions, individually) and actually runs them. ``opt`` is a
|
||||
command-line wrapper for the pass manager.
|
||||
|
||||
LLVM defines two kinds of pass managers:
|
||||
|
||||
- The
|
||||
`FunctionPassManager <http://llvm.org/docs/doxygen/html/classllvm_1_1FunctionPassManager.html>`_
|
||||
manages function or basic-block passes. These lighter weight passes
|
||||
can be used immediately after each generated function to reduce
|
||||
memory footprint.
|
||||
|
||||
- The
|
||||
`PassManager <http://llvm.org/docs/doxygen/html/classllvm_1_1PassManager.html>`_
|
||||
manages module passes for optimizing the entire module.
|
||||
|
||||
|
||||
Bitcode
|
||||
=======
|
||||
|
||||
LLVM IR can be represented as a bitcode format for disk storage. It is
|
||||
`suitable for fast loading by JIT
|
||||
compiler <http://llvm.org/docs/LangRef.html#introduction>`_. See `LLVM
|
||||
documentation <http://llvm.org/docs/BitCodeFormat.html>`_ for detail
|
||||
about the bitcode format.
|
||||
|
||||
|
||||
Execution Engine, JIT and Interpreter
|
||||
=====================================
|
||||
|
||||
The *execution engine* implements execution of LLVM IR through an
|
||||
interpreter or a JIT dynamic compiler. An *execution engine* can contain
|
||||
multiple modules.
|
||||
|
||||
**Note**
|
||||
|
||||
Inter-module reference is not possible. That is module ``A`` cannot
|
||||
call a function in module ``B``, directly.
|
||||
|
||||
9
docs/source/doc/llvmcore.rst
Normal file
9
docs/source/doc/llvmcore.rst
Normal file
|
|
@ -0,0 +1,9 @@
|
|||
********************************
|
||||
llvm.core
|
||||
********************************
|
||||
|
||||
.. toctree::
|
||||
:titlesonly:
|
||||
:glob:
|
||||
|
||||
llvm.core.*
|
||||
9
docs/source/doc/llvmee.rst
Normal file
9
docs/source/doc/llvmee.rst
Normal file
|
|
@ -0,0 +1,9 @@
|
|||
********************************
|
||||
llvm.ee
|
||||
********************************
|
||||
|
||||
.. toctree::
|
||||
:titlesonly:
|
||||
:glob:
|
||||
|
||||
llvm.ee.*
|
||||
9
docs/source/doc/llvmpasses.rst
Normal file
9
docs/source/doc/llvmpasses.rst
Normal file
|
|
@ -0,0 +1,9 @@
|
|||
********************************
|
||||
llvm.passes
|
||||
********************************
|
||||
|
||||
.. toctree::
|
||||
:titlesonly:
|
||||
:glob:
|
||||
|
||||
llvm.passes.*
|
||||
89
docs/source/doc/llvmpy_package.rst
Normal file
89
docs/source/doc/llvmpy_package.rst
Normal file
|
|
@ -0,0 +1,89 @@
|
|||
***********************
|
||||
The llvmpy Package
|
||||
***********************
|
||||
|
||||
The llvmpy is a Python package, consisting of 6 modules, that wrap over
|
||||
enough LLVM APIs to allow the implementation of your own compiler/VM
|
||||
backend in pure Python. If you're come this far, you probably know why
|
||||
this is a good idea.
|
||||
|
||||
Out of the 6 modules, one is an "extension" module (i.e., it is written
|
||||
in C), and another one is a small private utility module, which leaves 4
|
||||
public modules. These are:
|
||||
|
||||
- *llvm* -- top-level package, common classes (like exceptions)
|
||||
- *llvm.core* -- IR-related APIs
|
||||
- *llvm.ee* -- execution engine related APIs
|
||||
- *llvm.passes* -- pass manager and passes related APIs
|
||||
|
||||
The modules contain only classes and (integer) constants. Mostly simple
|
||||
Python constructs are used (deliberately) --
|
||||
`property() <http://docs.python.org/lib/built-in-funcs.html>`_ and
|
||||
`property
|
||||
decorators <http://wiki.python.org/moin/PythonDecoratorLibrary>`_ are
|
||||
probably the most exotic animals around. All classes are "new style"
|
||||
classes. The APIs are designed to be navigable (and guessable!) once you
|
||||
know a few conventions. These conventions are highlighted in the
|
||||
sections below.
|
||||
|
||||
Here is a quick overview of the contents of each package:
|
||||
|
||||
llvm
|
||||
----
|
||||
|
||||
- LLVMException -- exception class (currently the only one)
|
||||
|
||||
llvm.core
|
||||
---------
|
||||
|
||||
- `Module <llvm.core.Module.html>`_ -- represents an LLVM Module
|
||||
- `Type <types.html>`_ -- represents an LLVM Type
|
||||
- `Value <values.html>`_ -- represents an LLVM Value, including:
|
||||
globals, constants, variables, arguments, functions, instructions,
|
||||
etc..
|
||||
- `BasicBlock <llvm.core.BasicBlock.html>`_ -- another derived of
|
||||
Value, represents an LLVM basic block
|
||||
- `Builder <llvm.core.Builder.html>`_ -- used for creating
|
||||
instructions, wraps LLVM IRBuilder helper class
|
||||
- constants *TYPE\_\** that represents various types
|
||||
- constants *CC\_\** that represent calling conventions
|
||||
- constants *ICMP\_\** and *FCMP\_\** that represent integer and real
|
||||
comparison predicates (like less than, greater than etc.)
|
||||
- constants *LINKAGE\_\** that represent linkage of symbols (external,
|
||||
internal etc.)
|
||||
- constants *VISIBILITY\_\** that represents visibility of symbols
|
||||
(default, hidden, protected)
|
||||
- constants *ATTR\_\** that represent function parameter attributes
|
||||
|
||||
llvm.ee
|
||||
-------
|
||||
|
||||
- `ExecutionEngine <llvm.ee.ExecutionEngine.html>`_ -- represents an
|
||||
execution engine (which can be an either an interpreter or a JIT)
|
||||
- `TargetData <llvm.ee.TargetData.html>`_ -- represents the ABI of the
|
||||
target platform (details like sizes and alignment of primitive types,
|
||||
endinanness etc)
|
||||
|
||||
llvm.passes
|
||||
-----------
|
||||
|
||||
- `PassManager <llvm.passes.PassManager.html>`_ -- represents an LLVM
|
||||
pass manager
|
||||
- `FunctionPassManager <llvm.passes.FunctionPassManager.html>`_ --
|
||||
represents an LLVM function pass manager
|
||||
- constants *PASS\_\** that represent various passes
|
||||
|
||||
A note on the importing of these modules
|
||||
----------------------------------------
|
||||
|
||||
Pythonically, modules are imported with the statement
|
||||
``import llvm.core``. However, you might find it more convenient to
|
||||
import llvmpy modules thus:
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
from llvm import *
|
||||
from llvm.core import *
|
||||
from llvm.ee import *
|
||||
from llvm.passes import *
|
||||
123
docs/source/doc/types.rst
Normal file
123
docs/source/doc/types.rst
Normal file
|
|
@ -0,0 +1,123 @@
|
|||
+----------------+
|
||||
| layout: page |
|
||||
+----------------+
|
||||
| title: Types |
|
||||
+----------------+
|
||||
|
||||
Types are what you think they are. A instance of
|
||||
`llvm.core.Type <llvm.core.Type.html>`_, or one of its derived classes,
|
||||
represent a type. llvmpy does not use as many classes to represent
|
||||
types as does LLVM itself. Some types are represented using
|
||||
`llvm.core.Type <llvm.core.Type.html>`_ itself and the rest are
|
||||
represented using derived classes of
|
||||
`llvm.core.Type <llvm.core.Type.html>`_. As usual, an instance is
|
||||
created via one of the static methods of `Type <llvm.core.Type.html>`_.
|
||||
These methods return an instance of either
|
||||
`llvm.core.Type <llvm.core.Type.html>`_ itself or one of its derived
|
||||
classes.
|
||||
|
||||
The following table lists all the available types along with the static
|
||||
method which has to be used to construct it and the name of the class
|
||||
whose object is actually returned by the static method.
|
||||
|
||||
Name \| Constructor Method \| Class \|
|
||||
-----\|:------------------:\|:-----:\| integer of bitwidth *n* \|
|
||||
Type.int(n) \| `IntegerType <llvm.core.IntegerType.html>`_ \| 32-bit
|
||||
float \| Type.float() \| `Type <llvm.core.Type.html>`_ \| 64-bit double
|
||||
\| Type.double() \| `Type <llvm.core.Type.html>`_ \| 80-bit float \|
|
||||
Type.x86\_fp80() \| `Type <llvm.core.Type.html>`_ \| 128-bit float
|
||||
(112-bit mantissa) \| Type.fp128() \| `Type <llvm.core.Type.html>`_ \|
|
||||
128-bit float (two 64-bits) \| Type.ppc\_fp128() \|
|
||||
`Type <llvm.core.Type.html>`_ \| function \| Type.function(r, p, v) \|
|
||||
`FunctionType <llvm.core.FunctionType.html>`_ \| unpacked struct \|
|
||||
Type.struct(eltys, name) \| `StructType <llvm.core.StructType.html>`_ \|
|
||||
packed struct \| Type.packed\_struct(eltys, name) \|
|
||||
`StructType <llvm.core.StructType.html>`_ \| opaque struct \|
|
||||
Type.opaque(name) \| `StructType <llvm.core.StructType.html>`_ \| array
|
||||
\| Type.array(elty, count) \| `ArrayType <llvm.core.ArrayType.html>`_ \|
|
||||
pointer to value of type *pty* \| Type.pointer(pty, addrspc) \|
|
||||
`PointerType <llvm.core.PointerType.html>`_ \| vector \|
|
||||
Type.vector(elty, count) \| `VectorType <llvm.core.VectorType.html>`_ \|
|
||||
void \| Type.void() \| `Type <llvm.core.Type.html>`_ \| label \|
|
||||
Type.label() \| `Type <llvm.core.Type.html>`_ \|
|
||||
|
||||
The class hierarchy is:
|
||||
|
||||
::
|
||||
|
||||
Type
|
||||
IntegerType
|
||||
FunctionType
|
||||
StructType
|
||||
ArrayType
|
||||
PointerType
|
||||
VectorType
|
||||
|
||||
--------------
|
||||
|
||||
An Example
|
||||
----------
|
||||
|
||||
Here is an example that demonstrates the creation of types:
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
#!/usr/bin/env python
|
||||
|
||||
# integers
|
||||
int_ty = Type.int() bool_ty = Type.int(1) int_64bit = Type.int(64)
|
||||
|
||||
# floats
|
||||
sprec_real = Type.float() dprec_real = Type.double()
|
||||
|
||||
# arrays and vectors
|
||||
intar_ty = Type.array( int_ty, 10 ) # "typedef int intar_ty[10];"
|
||||
twodim = Type.array( intar_ty , 10 ) # "typedef int twodim[10][10];"
|
||||
vec = Type.array( int_ty, 10 )
|
||||
|
||||
# structures
|
||||
s1_ty = Type.struct( [ int_ty, sprec_real ] ) # "struct s1_ty { int
|
||||
v1; float v2; };"
|
||||
|
||||
# pointers
|
||||
intptr_ty = Type.pointer(int_ty) # "typedef int \*intptr_ty;"
|
||||
|
||||
# functions
|
||||
f1 = Type.function( int_ty, [ int_ty ] ) # functions that take 1
|
||||
int_ty and return 1 int_ty
|
||||
|
||||
f2 = Type.function( Type.void(), [ int_ty, int_ty ] ) # functions that
|
||||
take 2 int_tys and return nothing
|
||||
|
||||
f3 = Type.function( Type.void(), ( int_ty, int_ty ) ) # same as f2;
|
||||
any iterable can be used
|
||||
|
||||
fnargs = [ Type.pointer( Type.int(8) ) ] printf = Type.function(
|
||||
Type.int(), fnargs, True ) # variadic function
|
||||
|
||||
|
||||
|
||||
--------------
|
||||
|
||||
Another Example: Recursive Type
|
||||
-------------------------------
|
||||
|
||||
The type system was rewritten in LLVM 3.0. The old opaque type was
|
||||
removed. Instead, identified ``StructType`` can now be defined without a
|
||||
body. Doing so creates a opaque structure. One can then set the body
|
||||
after the construction of a structure.
|
||||
|
||||
(See `LLVM
|
||||
Blog <http://blog.llvm.org/2011/11/llvm-30-type-system-rewrite.html>`_
|
||||
for detail about the new type system.)
|
||||
|
||||
The following code defines a opaque structure, named "mystruct". The
|
||||
body is defined after the construction using ``StructType.set_body``.
|
||||
The second subtype is a pointer to a "mystruct" type.
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
ts = Type.opaque('mystruct')
|
||||
ts.set_body([Type.int(), Type.pointer(ts)])
|
||||
17
docs/source/doc/userguide.rst
Normal file
17
docs/source/doc/userguide.rst
Normal file
|
|
@ -0,0 +1,17 @@
|
|||
************
|
||||
User Guide
|
||||
************
|
||||
|
||||
llvmpy provides Python bindings for LLVM. This document explains how
|
||||
you can setup and use it. A working knowledge of Python and a basic idea
|
||||
of LLVM is assumed.
|
||||
|
||||
.. toctree::
|
||||
:maxdepth: 1
|
||||
|
||||
getting_started.rst
|
||||
llvm_concepts.rst
|
||||
llvmpy_package.rst
|
||||
|
||||
|
||||
|
||||
78
docs/source/doc/values.rst
Normal file
78
docs/source/doc/values.rst
Normal file
|
|
@ -0,0 +1,78 @@
|
|||
+-----------------+
|
||||
| layout: page |
|
||||
+-----------------+
|
||||
| title: Values |
|
||||
+-----------------+
|
||||
|
||||
`llvm.core.Value <llvm.core.Value.html>`_ is the base class of all
|
||||
values computed by a program that may be used as operands to other
|
||||
values. A value has a type associated with it (an object of
|
||||
`llvm.core.Type <types.html>`_).
|
||||
|
||||
The class hierarchy is:
|
||||
|
||||
::
|
||||
|
||||
Value
|
||||
User
|
||||
Constant
|
||||
ConstantExpr
|
||||
ConstantAggregateZero
|
||||
ConstantInt
|
||||
ConstantFP
|
||||
ConstantArray
|
||||
ConstantStruct
|
||||
ConstantVector
|
||||
ConstantPointerNull
|
||||
UndefValue
|
||||
GlobalValue
|
||||
GlobalVariable
|
||||
Function
|
||||
Instruction
|
||||
CallOrInvokeInstruction
|
||||
PHINode
|
||||
SwitchInstruction
|
||||
CompareInstruction
|
||||
Argument
|
||||
BasicBlock
|
||||
|
||||
The `Value <llvm.core.Value.html>`_ class is abstract, it's not meant to
|
||||
be instantiated. `User <llvm.core.User.html>`_ is a
|
||||
`Value <llvm.core.Value.html>`_ that in turn uses (i.e., can refer to)
|
||||
other values (for e.g., a constant expression 1+2 refers to two constant
|
||||
values 1 and 2).
|
||||
|
||||
`Constant <llvm.core.Constant.html>`_-s represent constants that appear
|
||||
within code or as initializers of globals. They are constructed using
|
||||
static methods of `Constant <llvm.core.Constant.html>`_. Various types
|
||||
of constants are represented by various subclasses of
|
||||
`Constant <llvm.core.Constant.html>`_. However, most of them are empty
|
||||
and do not provide any additional attributes or methods over
|
||||
`Constant <llvm.core.Constant.html>`_.
|
||||
|
||||
The `Function <functions.html>`_ object represents an instance of a
|
||||
function type. Such objects contain
|
||||
`Argument <llvm.core.Argument.html>`_ objects, which represent the
|
||||
actual, local-variable-like arguments of the function (not to be
|
||||
confused with the arguments returned by a function *type* object --
|
||||
these represent the *type* of the arguments).
|
||||
|
||||
The various `Instruction <llvm.core.Instruction.html>`_-s are created by
|
||||
the `Builder <llvm.core.Builder.html>`_ class. Most instructions are
|
||||
represented by `Instruction <llvm.core.Instruction.html>`_ itself, but
|
||||
there are a few subclasses that represent interesting instructions.
|
||||
|
||||
`Value <llvm.core.Value.html>`_ objects have a type (read-only), and a
|
||||
name (read-write).
|
||||
|
||||
**Related Links** `functions <functions.html>`_,
|
||||
`comparision <comparision.html>`_,
|
||||
`llvm.core.Value <llvm.core.Value.html>`_,
|
||||
`llvm.core.User <llvm.core.User.html>`_,
|
||||
`llvm.core.Constant <llvm.core.Constant.html>`_,
|
||||
`llvm.core.GlobalValue <llvm.core.GlobalValue.html>`_,
|
||||
`llvm.core.GlobalVariable <llvm.core.GlobalVariable.html>`_,
|
||||
`llvm.core.Argument <llvm.core.Argument.html>`_,
|
||||
`llvm.core.Instruction <llvm.core.Instruction.html>`_,
|
||||
`llvm.core.Builder <llvm.core.Builder.html>`_,
|
||||
`llvm.core.BasicBlock <llvm.core.BasicBlock.html>`_
|
||||
30
docs/source/index.rst
Normal file
30
docs/source/index.rst
Normal file
|
|
@ -0,0 +1,30 @@
|
|||
.. llvmpy documentation master file, created by
|
||||
sphinx-quickstart on Wed Aug 8 17:33:58 2012.
|
||||
You can adapt this file completely to your liking, but it should at least
|
||||
contain the root `toctree` directive.
|
||||
|
||||
llvmpy
|
||||
======
|
||||
|
||||
Contents:
|
||||
|
||||
.. toctree::
|
||||
:titlesonly:
|
||||
:maxdepth: 2
|
||||
|
||||
doc/userguide.rst
|
||||
doc/llvm_cbuilder.rst
|
||||
doc/llpython/index.rst
|
||||
doc/examples.rst
|
||||
doc/llvmcore.rst
|
||||
doc/llvmee.rst
|
||||
doc/llvmpasses.rst
|
||||
|
||||
|
||||
Indices and tables
|
||||
------------------
|
||||
|
||||
* :ref:`genindex`
|
||||
* :ref:`modindex`
|
||||
* :ref:`search`
|
||||
|
||||
152
example/vector_instr.py
Normal file
152
example/vector_instr.py
Normal file
|
|
@ -0,0 +1,152 @@
|
|||
'''
|
||||
This example shows:
|
||||
1) how to use vector instructions
|
||||
2) how to take advantage of LLVM loop vectorization to transform scalar
|
||||
operations to vector operations
|
||||
'''
|
||||
|
||||
from __future__ import print_function
|
||||
import llvm.core as lc
|
||||
import llvm.ee as le
|
||||
import llvm.passes as lp
|
||||
from ctypes import CFUNCTYPE, POINTER, c_int, c_float
|
||||
|
||||
def build_manual_vector():
|
||||
mod = lc.Module.new('manual.vector')
|
||||
intty = lc.Type.int(32)
|
||||
vecty = lc.Type.vector(lc.Type.float(), 4)
|
||||
aryty = lc.Type.pointer(lc.Type.float())
|
||||
fnty = lc.Type.function(lc.Type.void(), [aryty, aryty, aryty, intty])
|
||||
fn = mod.add_function(fnty, name='vector_add')
|
||||
bbentry = fn.append_basic_block('entry')
|
||||
bbloopcond = fn.append_basic_block('loop.cond')
|
||||
bbloopbody = fn.append_basic_block('loop.body')
|
||||
bbexit = fn.append_basic_block('exit')
|
||||
builder = lc.Builder.new(bbentry)
|
||||
|
||||
# populate function body
|
||||
in1, in2, out, size = fn.args
|
||||
ZERO = lc.Constant.null(intty)
|
||||
loopi_ptr = builder.alloca(intty)
|
||||
builder.store(ZERO, loopi_ptr)
|
||||
|
||||
builder.branch(bbloopcond)
|
||||
builder.position_at_end(bbloopcond)
|
||||
|
||||
loopi = builder.load(loopi_ptr)
|
||||
loopcond = builder.icmp(lc.ICMP_ULT, loopi, size)
|
||||
|
||||
builder.cbranch(loopcond, bbloopbody, bbexit)
|
||||
builder.position_at_end(bbloopbody)
|
||||
|
||||
vecaryty = lc.Type.pointer(vecty)
|
||||
in1asvec = builder.bitcast(builder.gep(in1, [loopi]), vecaryty)
|
||||
in2asvec = builder.bitcast(builder.gep(in2, [loopi]), vecaryty)
|
||||
outasvec = builder.bitcast(builder.gep(out, [loopi]), vecaryty)
|
||||
|
||||
vec1 = builder.load(in1asvec)
|
||||
vec2 = builder.load(in2asvec)
|
||||
|
||||
vecout = builder.fadd(vec1, vec2)
|
||||
|
||||
builder.store(vecout, outasvec)
|
||||
|
||||
next = builder.add(loopi, lc.Constant.int(intty, 4))
|
||||
builder.store(next, loopi_ptr)
|
||||
|
||||
builder.branch(bbloopcond)
|
||||
builder.position_at_end(bbexit)
|
||||
|
||||
builder.ret_void()
|
||||
|
||||
return mod, fn
|
||||
|
||||
|
||||
def build_auto_vector():
|
||||
mod = lc.Module.new('auto.vector')
|
||||
# Loop vectorize is sensitive to the size of the index size(!?)
|
||||
intty = lc.Type.int(tuple.__itemsize__ * 8)
|
||||
aryty = lc.Type.pointer(lc.Type.float())
|
||||
fnty = lc.Type.function(lc.Type.void(), [aryty, aryty, aryty, intty])
|
||||
fn = mod.add_function(fnty, name='vector_add')
|
||||
bbentry = fn.append_basic_block('entry')
|
||||
bbloopcond = fn.append_basic_block('loop.cond')
|
||||
bbloopbody = fn.append_basic_block('loop.body')
|
||||
bbexit = fn.append_basic_block('exit')
|
||||
builder = lc.Builder.new(bbentry)
|
||||
|
||||
# populate function body
|
||||
in1, in2, out, size = fn.args
|
||||
in1.add_attribute(lc.ATTR_NO_ALIAS)
|
||||
in2.add_attribute(lc.ATTR_NO_ALIAS)
|
||||
out.add_attribute(lc.ATTR_NO_ALIAS)
|
||||
ZERO = lc.Constant.null(intty)
|
||||
loopi_ptr = builder.alloca(intty)
|
||||
builder.store(ZERO, loopi_ptr)
|
||||
|
||||
builder.branch(bbloopcond)
|
||||
builder.position_at_end(bbloopcond)
|
||||
|
||||
loopi = builder.load(loopi_ptr)
|
||||
loopcond = builder.icmp(lc.ICMP_ULT, loopi, size)
|
||||
|
||||
builder.cbranch(loopcond, bbloopbody, bbexit)
|
||||
builder.position_at_end(bbloopbody)
|
||||
|
||||
in1elem = builder.load(builder.gep(in1, [loopi]))
|
||||
in2elem = builder.load(builder.gep(in2, [loopi]))
|
||||
|
||||
outelem = builder.fadd(in1elem, in2elem)
|
||||
|
||||
builder.store(outelem, builder.gep(out, [loopi]))
|
||||
|
||||
next = builder.add(loopi, lc.Constant.int(intty, 1))
|
||||
builder.store(next, loopi_ptr)
|
||||
|
||||
builder.branch(bbloopcond)
|
||||
builder.position_at_end(bbexit)
|
||||
|
||||
builder.ret_void()
|
||||
|
||||
return mod, fn
|
||||
|
||||
def example(title, module_builder, opt):
|
||||
print(title.center(80, '='))
|
||||
mod, fn = module_builder()
|
||||
|
||||
eb = le.EngineBuilder.new(mod).opt(3)
|
||||
if opt:
|
||||
print('opt')
|
||||
tm = eb.select_target()
|
||||
pms = lp.build_pass_managers(mod=mod, tm=tm, opt=3, loop_vectorize=True,
|
||||
fpm=False)
|
||||
pms.pm.run(mod)
|
||||
|
||||
print(mod)
|
||||
print(mod.to_native_assembly())
|
||||
|
||||
engine = eb.create()
|
||||
ptr = engine.get_pointer_to_function(fn)
|
||||
|
||||
callable = CFUNCTYPE(None, POINTER(c_float), POINTER(c_float),
|
||||
POINTER(c_float), c_int)(ptr)
|
||||
|
||||
N = 20
|
||||
in1 = (c_float * N)(*range(N))
|
||||
in2 = (c_float * N)(*range(N))
|
||||
out = (c_float * N)()
|
||||
|
||||
print('in1: ', list(in1))
|
||||
print('in1: ', list(in2))
|
||||
|
||||
callable(in1, in2, out, N)
|
||||
|
||||
print('out', list(out))
|
||||
|
||||
|
||||
def main():
|
||||
example('manual vector function', build_manual_vector, False)
|
||||
example('auto vector function', build_auto_vector, True)
|
||||
|
||||
if __name__ == '__main__':
|
||||
main()
|
||||
0
llpython/__init__.py
Normal file
0
llpython/__init__.py
Normal file
125
llpython/byte_control.py
Normal file
125
llpython/byte_control.py
Normal file
|
|
@ -0,0 +1,125 @@
|
|||
# ______________________________________________________________________
|
||||
from __future__ import absolute_import
|
||||
import opcode
|
||||
from . import opcode_util
|
||||
import pprint
|
||||
|
||||
from .bytecode_visitor import BasicBlockVisitor, BenignBytecodeVisitorMixin
|
||||
from .control_flow import ControlFlowGraph
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class ControlFlowBuilder (BenignBytecodeVisitorMixin, BasicBlockVisitor):
|
||||
'''Visitor responsible for traversing a bytecode basic block map and
|
||||
building a control flow graph (CFG).
|
||||
|
||||
The primary purpose of this transformation is to create a CFG,
|
||||
which is used by later transformers for dataflow analysis.
|
||||
'''
|
||||
def visit (self, flow, nargs = 0, *args, **kws):
|
||||
'''Given a bytecode flow, and an optional number of arguments,
|
||||
return a :py:class:`llpython.control_flow.ControlFlowGraph`
|
||||
instance describing the full control flow of the bytecode
|
||||
flow.'''
|
||||
self.nargs = nargs
|
||||
ret_val = super(ControlFlowBuilder, self).visit(flow, *args, **kws)
|
||||
del self.nargs
|
||||
return ret_val
|
||||
|
||||
def enter_blocks (self, blocks):
|
||||
super(ControlFlowBuilder, self).enter_blocks(blocks)
|
||||
self.blocks = blocks
|
||||
self.block_list = list(blocks.keys())
|
||||
self.block_list.sort()
|
||||
self.cfg = ControlFlowGraph()
|
||||
self.loop_stack = []
|
||||
for block in self.block_list:
|
||||
self.cfg.add_block(block, blocks[block])
|
||||
|
||||
def exit_blocks (self, blocks):
|
||||
super(ControlFlowBuilder, self).exit_blocks(blocks)
|
||||
assert self.blocks == blocks
|
||||
self.cfg.compute_dataflow()
|
||||
self.cfg.update_for_ssa()
|
||||
ret_val = self.cfg
|
||||
del self.loop_stack
|
||||
del self.cfg
|
||||
del self.block_list
|
||||
del self.blocks
|
||||
return ret_val
|
||||
|
||||
def enter_block (self, block):
|
||||
self.block = block
|
||||
assert block in self.cfg.blocks
|
||||
if block == 0:
|
||||
for local_index in range(self.nargs):
|
||||
self.op_STORE_FAST(0, opcode.opmap['STORE_FAST'], local_index)
|
||||
return True
|
||||
|
||||
def _get_next_block (self, block):
|
||||
return self.block_list[self.block_list.index(block) + 1]
|
||||
|
||||
def exit_block (self, block):
|
||||
assert block == self.block
|
||||
del self.block
|
||||
i, op, arg = self.blocks[block][-1]
|
||||
opname = opcode.opname[op]
|
||||
if op in opcode.hasjabs:
|
||||
self.cfg.add_edge(block, arg)
|
||||
elif op in opcode.hasjrel:
|
||||
self.cfg.add_edge(block, i + arg + 3)
|
||||
elif opname == 'BREAK_LOOP':
|
||||
loop_i, _, loop_arg = self.loop_stack[-1]
|
||||
self.cfg.add_edge(block, loop_i + loop_arg + 3)
|
||||
elif opname != 'RETURN_VALUE':
|
||||
self.cfg.add_edge(block, self._get_next_block(block))
|
||||
if op in opcode_util.hascbranch:
|
||||
self.cfg.add_edge(block, self._get_next_block(block))
|
||||
|
||||
def op_LOAD_FAST (self, i, op, arg, *args, **kws):
|
||||
self.cfg.blocks_reads[self.block].add(arg)
|
||||
return super(ControlFlowBuilder, self).op_LOAD_FAST(i, op, arg, *args,
|
||||
**kws)
|
||||
|
||||
def op_STORE_FAST (self, i, op, arg, *args, **kws):
|
||||
self.cfg.writes_local(self.block, i, arg)
|
||||
return super(ControlFlowBuilder, self).op_STORE_FAST(i, op, arg, *args,
|
||||
**kws)
|
||||
|
||||
def op_SETUP_LOOP (self, i, op, arg, *args, **kws):
|
||||
self.loop_stack.append((i, op, arg))
|
||||
return super(ControlFlowBuilder, self).op_SETUP_LOOP(i, op, arg, *args,
|
||||
**kws)
|
||||
|
||||
def op_POP_BLOCK (self, i, op, arg, *args, **kws):
|
||||
self.loop_stack.pop()
|
||||
return super(ControlFlowBuilder, self).op_POP_BLOCK(i, op, arg, *args,
|
||||
**kws)
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def build_cfg (func):
|
||||
'''Given a Python function, create a bytecode flow, visit the flow
|
||||
object, and return a control flow graph.'''
|
||||
co_obj = opcode_util.get_code_object(func)
|
||||
return ControlFlowBuilder().visit(opcode_util.build_basic_blocks(co_obj),
|
||||
co_obj.co_argcount)
|
||||
|
||||
# ______________________________________________________________________
|
||||
# Main (self-test) routine
|
||||
|
||||
def main (*args, **kws):
|
||||
from tests import llfuncs
|
||||
if not args:
|
||||
args = ('doslice',)
|
||||
for arg in args:
|
||||
build_cfg(getattr(llfuncs, arg)).pprint()
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
if __name__ == "__main__":
|
||||
import sys
|
||||
main(*sys.argv[1:])
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of byte_control.py
|
||||
266
llpython/byte_flow.py
Normal file
266
llpython/byte_flow.py
Normal file
|
|
@ -0,0 +1,266 @@
|
|||
# ______________________________________________________________________
|
||||
from __future__ import absolute_import
|
||||
import dis
|
||||
import opcode
|
||||
|
||||
from .bytecode_visitor import BasicBlockVisitor
|
||||
from . import opcode_util
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class BytecodeFlowBuilder (BasicBlockVisitor):
|
||||
'''Transforms a CFG into a bytecode "flow tree".
|
||||
|
||||
The flow tree is a Python dictionary, described loosely by the
|
||||
following set of productions:
|
||||
|
||||
* `flow_tree` ``:=`` ``{`` `blocks` ``*`` ``}``
|
||||
* `blocks` ``:=`` `block_index` ``:`` ``[`` `bytecode_tree` ``*`` ``]``
|
||||
* `bytecode_tree` ``:=`` ``(`` `opcode_index` ``,`` `opcode` ``,``
|
||||
`opname` ``,`` `arg` ``,`` ``[`` `bytecode_tree` ``*`` ``]`` ``)``
|
||||
|
||||
The primary purpose of this transformation is to simulate the
|
||||
value stack, removing it and any stack-specific opcodes.'''
|
||||
|
||||
def __init__ (self, *args, **kws):
|
||||
super(BytecodeFlowBuilder, self).__init__(*args, **kws)
|
||||
om_items = opcode_util.OPCODE_MAP.items()
|
||||
self.opmap = dict((opcode.opmap[opname], (opname, pops, pushes, stmt))
|
||||
for opname, (pops, pushes, stmt) in om_items
|
||||
if opname in opcode.opmap)
|
||||
|
||||
def _visit_op (self, i, op, arg, opname, pops, pushes, appends):
|
||||
assert pops is not None, ('%s not well defined in opcode_util.'
|
||||
'OPCODE_MAP' % opname)
|
||||
if pops:
|
||||
if pops < 0:
|
||||
pops = arg - pops - 1
|
||||
assert pops <= len(self.stack), ("Stack underflow at instruction "
|
||||
"%d (%s)!" % (i, opname))
|
||||
stk_args = self.stack[-pops:]
|
||||
del self.stack[-pops:]
|
||||
else:
|
||||
stk_args = []
|
||||
ret_val = (i, op, opname, arg, stk_args)
|
||||
if pushes:
|
||||
self.stack.append(ret_val)
|
||||
if appends:
|
||||
self.block.append(ret_val)
|
||||
return ret_val
|
||||
|
||||
def _op (self, i, op, arg):
|
||||
opname, pops, pushes, appends = self.opmap[op]
|
||||
return self._visit_op(i, op, arg, opname, pops, pushes, appends)
|
||||
|
||||
def visit_cfg (self, cfg):
|
||||
self.cfg = cfg
|
||||
ret_val = self.visit(cfg.blocks)
|
||||
del self.cfg
|
||||
return ret_val
|
||||
|
||||
def enter_blocks (self, blocks):
|
||||
labels = list(blocks.keys())
|
||||
labels.sort()
|
||||
self.blocks = dict((index, [])
|
||||
for index in labels)
|
||||
self.loop_stack = []
|
||||
self.stacks = {}
|
||||
|
||||
def exit_blocks (self, blocks):
|
||||
ret_val = self.blocks
|
||||
del self.stacks
|
||||
del self.loop_stack
|
||||
del self.blocks
|
||||
return ret_val
|
||||
|
||||
def enter_block (self, block):
|
||||
self.block_no = block
|
||||
self.block = self.blocks[block]
|
||||
in_blocks = self.cfg.blocks_in[block]
|
||||
if len(in_blocks) == 0:
|
||||
self.stack = []
|
||||
else:
|
||||
pred_stack = None
|
||||
for pred in in_blocks:
|
||||
if pred in self.stacks:
|
||||
pred_stack = self.stacks[pred]
|
||||
break
|
||||
if pred_stack is not None:
|
||||
self.stack = pred_stack[:]
|
||||
else:
|
||||
raise NotImplementedError()
|
||||
|
||||
def exit_block (self, block):
|
||||
assert self.block_no == block
|
||||
self.stacks[block] = self.stack
|
||||
del self.stack
|
||||
del self.block
|
||||
del self.block_no
|
||||
|
||||
op_BINARY_ADD = _op
|
||||
op_BINARY_AND = _op
|
||||
op_BINARY_DIVIDE = _op
|
||||
op_BINARY_FLOOR_DIVIDE = _op
|
||||
op_BINARY_LSHIFT = _op
|
||||
op_BINARY_MODULO = _op
|
||||
op_BINARY_MULTIPLY = _op
|
||||
op_BINARY_OR = _op
|
||||
op_BINARY_POWER = _op
|
||||
op_BINARY_RSHIFT = _op
|
||||
op_BINARY_SUBSCR = _op
|
||||
op_BINARY_SUBTRACT = _op
|
||||
op_BINARY_TRUE_DIVIDE = _op
|
||||
op_BINARY_XOR = _op
|
||||
|
||||
def op_BREAK_LOOP (self, i, op, arg):
|
||||
loop_i, _, loop_arg = self.loop_stack[-1]
|
||||
assert arg is None
|
||||
return self._op(i, op, loop_i + loop_arg + 3)
|
||||
|
||||
#op_BUILD_CLASS = _op
|
||||
op_BUILD_LIST = _op
|
||||
op_BUILD_MAP = _op
|
||||
op_BUILD_SLICE = _op
|
||||
op_BUILD_TUPLE = _op
|
||||
op_CALL_FUNCTION = _op
|
||||
op_CALL_FUNCTION_KW = _op
|
||||
op_CALL_FUNCTION_VAR = _op
|
||||
op_CALL_FUNCTION_VAR_KW = _op
|
||||
op_COMPARE_OP = _op
|
||||
#op_CONTINUE_LOOP = _op
|
||||
op_DELETE_ATTR = _op
|
||||
op_DELETE_FAST = _op
|
||||
op_DELETE_GLOBAL = _op
|
||||
op_DELETE_NAME = _op
|
||||
op_DELETE_SLICE = _op
|
||||
op_DELETE_SUBSCR = _op
|
||||
|
||||
def op_DUP_TOP (self, i, op, arg):
|
||||
self.stack.append(self.stack[-1])
|
||||
|
||||
def op_DUP_TOPX (self, i, op, arg):
|
||||
self.stack += self.stack[-arg:]
|
||||
|
||||
#op_END_FINALLY = _op
|
||||
op_EXEC_STMT = _op
|
||||
#op_EXTENDED_ARG = _op
|
||||
op_FOR_ITER = _op
|
||||
op_GET_ITER = _op
|
||||
op_IMPORT_FROM = _op
|
||||
op_IMPORT_NAME = _op
|
||||
op_IMPORT_STAR = _op
|
||||
op_INPLACE_ADD = _op
|
||||
op_INPLACE_AND = _op
|
||||
op_INPLACE_DIVIDE = _op
|
||||
op_INPLACE_FLOOR_DIVIDE = _op
|
||||
op_INPLACE_LSHIFT = _op
|
||||
op_INPLACE_MODULO = _op
|
||||
op_INPLACE_MULTIPLY = _op
|
||||
op_INPLACE_OR = _op
|
||||
op_INPLACE_POWER = _op
|
||||
op_INPLACE_RSHIFT = _op
|
||||
op_INPLACE_SUBTRACT = _op
|
||||
op_INPLACE_TRUE_DIVIDE = _op
|
||||
op_INPLACE_XOR = _op
|
||||
op_JUMP_ABSOLUTE = _op
|
||||
op_JUMP_FORWARD = _op
|
||||
|
||||
def op_JUMP_IF_FALSE (self, i, op, arg):
|
||||
opname, _, _, _ = self.opmap[op]
|
||||
ret_val = (i, op, opname, arg, [self.stack[-1]])
|
||||
self.block.append(ret_val)
|
||||
return ret_val
|
||||
|
||||
op_JUMP_IF_TRUE = op_JUMP_IF_FALSE
|
||||
op_LIST_APPEND = _op
|
||||
op_LOAD_ATTR = _op
|
||||
op_LOAD_CLOSURE = _op
|
||||
op_LOAD_CONST = _op
|
||||
op_LOAD_DEREF = _op
|
||||
op_LOAD_FAST = _op
|
||||
op_LOAD_GLOBAL = _op
|
||||
op_LOAD_LOCALS = _op
|
||||
op_LOAD_NAME = _op
|
||||
op_MAKE_CLOSURE = _op
|
||||
op_MAKE_FUNCTION = _op
|
||||
op_NOP = _op
|
||||
|
||||
def op_POP_BLOCK (self, i, op, arg):
|
||||
self.loop_stack.pop()
|
||||
return self._op(i, op, arg)
|
||||
|
||||
op_POP_JUMP_IF_FALSE = _op
|
||||
op_POP_JUMP_IF_TRUE = _op
|
||||
op_POP_TOP = _op
|
||||
op_PRINT_EXPR = _op
|
||||
op_PRINT_ITEM = _op
|
||||
op_PRINT_ITEM_TO = _op
|
||||
op_PRINT_NEWLINE = _op
|
||||
op_PRINT_NEWLINE_TO = _op
|
||||
op_RAISE_VARARGS = _op
|
||||
op_RETURN_VALUE = _op
|
||||
|
||||
def op_ROT_FOUR (self, i, op, arg):
|
||||
self.stack[-4:] = (self.stack[-1], self.stack[-4], self.stack[-3],
|
||||
self.stack[-2])
|
||||
|
||||
def op_ROT_THREE (self, i, op, arg):
|
||||
self.stack[-3:] = (self.stack[-1], self.stack[-3], self.stack[-2])
|
||||
|
||||
def op_ROT_TWO (self, i, op, arg):
|
||||
self.stack[-2:] = (self.stack[-1], self.stack[-2])
|
||||
|
||||
#op_SETUP_EXCEPT = _op
|
||||
#op_SETUP_FINALLY = _op
|
||||
|
||||
def op_SETUP_LOOP (self, i, op, arg):
|
||||
self.loop_stack.append((i, op, arg))
|
||||
self.block.append((i, op, self.opnames[op], arg, []))
|
||||
|
||||
op_SLICE = _op
|
||||
#op_STOP_CODE = _op
|
||||
op_STORE_ATTR = _op
|
||||
op_STORE_DEREF = _op
|
||||
op_STORE_FAST = _op
|
||||
op_STORE_GLOBAL = _op
|
||||
op_STORE_MAP = _op
|
||||
op_STORE_NAME = _op
|
||||
op_STORE_SLICE = _op
|
||||
op_STORE_SUBSCR = _op
|
||||
op_UNARY_CONVERT = _op
|
||||
op_UNARY_INVERT = _op
|
||||
op_UNARY_NEGATIVE = _op
|
||||
op_UNARY_NOT = _op
|
||||
op_UNARY_POSITIVE = _op
|
||||
op_UNPACK_SEQUENCE = _op
|
||||
#op_WITH_CLEANUP = _op
|
||||
op_YIELD_VALUE = _op
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def build_flow (func):
|
||||
'''Given a Python function, return a bytecode flow tree for that
|
||||
function.'''
|
||||
import byte_control
|
||||
cfg = byte_control.build_cfg(func)
|
||||
return BytecodeFlowBuilder().visit_cfg(cfg)
|
||||
|
||||
# ______________________________________________________________________
|
||||
# Main (self-test) routine
|
||||
|
||||
def main (*args):
|
||||
import pprint
|
||||
from tests import llfuncs
|
||||
if not args:
|
||||
args = ('doslice',)
|
||||
for arg in args:
|
||||
pprint.pprint(build_flow(getattr(llfuncs, arg)))
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
if __name__ == '__main__':
|
||||
import sys
|
||||
main(*sys.argv[1:])
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of byte_flow.py
|
||||
612
llpython/byte_translator.py
Normal file
612
llpython/byte_translator.py
Normal file
|
|
@ -0,0 +1,612 @@
|
|||
# ______________________________________________________________________
|
||||
'''Defines a bytecode based LLVM translator for llpython code.
|
||||
'''
|
||||
# ______________________________________________________________________
|
||||
# Module imports
|
||||
from __future__ import absolute_import
|
||||
import opcode
|
||||
import types
|
||||
import logging
|
||||
|
||||
import llvm.core as lc
|
||||
|
||||
from . import opcode_util
|
||||
from . import bytetype
|
||||
from .bytecode_visitor import BytecodeFlowVisitor
|
||||
from .byte_flow import BytecodeFlowBuilder
|
||||
from .byte_control import ControlFlowBuilder
|
||||
from .phi_injector import PhiInjector, synthetic_opname
|
||||
|
||||
# ______________________________________________________________________
|
||||
# Module data
|
||||
|
||||
logger = logging.getLogger(__name__)
|
||||
|
||||
# XXX Stolen from numba.translate:
|
||||
|
||||
_compare_mapping_float = {'>':lc.FCMP_OGT,
|
||||
'<':lc.FCMP_OLT,
|
||||
'==':lc.FCMP_OEQ,
|
||||
'>=':lc.FCMP_OGE,
|
||||
'<=':lc.FCMP_OLE,
|
||||
'!=':lc.FCMP_ONE}
|
||||
|
||||
_compare_mapping_sint = {'>':lc.ICMP_SGT,
|
||||
'<':lc.ICMP_SLT,
|
||||
'==':lc.ICMP_EQ,
|
||||
'>=':lc.ICMP_SGE,
|
||||
'<=':lc.ICMP_SLE,
|
||||
'!=':lc.ICMP_NE}
|
||||
|
||||
# XXX Stolen from numba.llvm_types:
|
||||
|
||||
class LLVMCaster (object):
|
||||
def build_pointer_cast(_, builder, lval1, lty2):
|
||||
return builder.bitcast(lval1, lty2)
|
||||
|
||||
def build_int_cast(_, builder, lval1, lty2, unsigned = False):
|
||||
width1 = lval1.type.width
|
||||
width2 = lty2.width
|
||||
ret_val = lval1
|
||||
if width2 > width1:
|
||||
if unsigned:
|
||||
ret_val = builder.zext(lval1, lty2)
|
||||
else:
|
||||
ret_val = builder.sext(lval1, lty2)
|
||||
elif width2 < width1:
|
||||
ret_val = builder.trunc(lval1, lty2)
|
||||
return ret_val
|
||||
|
||||
def build_float_ext(_, builder, lval1, lty2):
|
||||
return builder.fpext(lval1, lty2)
|
||||
|
||||
def build_float_trunc(_, builder, lval1, lty2):
|
||||
return builder.fptrunc(lval1, lty2)
|
||||
|
||||
def build_int_to_float_cast(_, builder, lval1, lty2, unsigned = False):
|
||||
ret_val = None
|
||||
if unsigned:
|
||||
ret_val = builder.uitofp(lval1, lty2)
|
||||
else:
|
||||
ret_val = builder.sitofp(lval1, lty2)
|
||||
return ret_val
|
||||
|
||||
def build_int_to_ptr_cast(_, builder, lval1, lty2):
|
||||
return builder.inttoptr(lval1, lty2)
|
||||
|
||||
def build_float_to_int_cast(_, builder, lval1, lty2, unsigned = False):
|
||||
ret_val = None
|
||||
if unsigned:
|
||||
ret_val = builder.fptoui(lval1, lty2)
|
||||
else:
|
||||
ret_val = builder.fptosi(lval1, lty2)
|
||||
return ret_val
|
||||
|
||||
CAST_MAP = {
|
||||
lc.TYPE_POINTER : build_pointer_cast,
|
||||
lc.TYPE_INTEGER: build_int_cast,
|
||||
(lc.TYPE_FLOAT, lc.TYPE_DOUBLE) : build_float_ext,
|
||||
(lc.TYPE_DOUBLE, lc.TYPE_FLOAT) : build_float_trunc,
|
||||
(lc.TYPE_INTEGER, lc.TYPE_FLOAT) : build_int_to_float_cast,
|
||||
(lc.TYPE_INTEGER, lc.TYPE_DOUBLE) : build_int_to_float_cast,
|
||||
(lc.TYPE_INTEGER, lc.TYPE_POINTER) : build_int_to_ptr_cast,
|
||||
(lc.TYPE_FLOAT, lc.TYPE_INTEGER) : build_float_to_int_cast,
|
||||
(lc.TYPE_DOUBLE, lc.TYPE_INTEGER) : build_float_to_int_cast,
|
||||
|
||||
}
|
||||
|
||||
@classmethod
|
||||
def build_cast(cls, builder, lval1, lty2, *args, **kws):
|
||||
ret_val = lval1
|
||||
lty1 = lval1.type
|
||||
lkind1 = lty1.kind
|
||||
lkind2 = lty2.kind
|
||||
|
||||
if lkind1 == lkind2:
|
||||
|
||||
if lkind1 in cls.CAST_MAP:
|
||||
ret_val = cls.CAST_MAP[lkind1](cls, builder, lval1, lty2,
|
||||
*args, **kws)
|
||||
else:
|
||||
raise NotImplementedError(lkind1)
|
||||
else:
|
||||
map_index = (lkind1, lkind2)
|
||||
if map_index in cls.CAST_MAP:
|
||||
ret_val = cls.CAST_MAP[map_index](cls, builder, lval1, lty2,
|
||||
*args, **kws)
|
||||
else:
|
||||
raise NotImplementedError(lkind1, lkind2)
|
||||
return ret_val
|
||||
|
||||
# ______________________________________________________________________
|
||||
# Class definitions
|
||||
|
||||
class LLVMTranslator (BytecodeFlowVisitor):
|
||||
'''Transformer responsible for visiting a set of bytecode flow
|
||||
trees, emitting LLVM code.
|
||||
|
||||
Unlike other translators in :py:mod:`llpython`, this
|
||||
incorporates the full transformation chain, starting with
|
||||
:py:class:`llpython.byte_flow.BytecodeFlowBuilder`, then
|
||||
:py:class:`llpython.byte_control.ControlFlowBuilder`, and
|
||||
then :py:class:`llpython.phi_injector.PhiInjector`.'''
|
||||
|
||||
def __init__ (self, llvm_module = None, *args, **kws):
|
||||
'''Constructor for LLVMTranslator.'''
|
||||
super(LLVMTranslator, self).__init__(*args, **kws)
|
||||
if llvm_module is None:
|
||||
llvm_module = lc.Module.new('Translated_Module_%d' % (id(self),))
|
||||
self.llvm_module = llvm_module
|
||||
self.bytecode_flow_builder = BytecodeFlowBuilder()
|
||||
self.control_flow_builder = ControlFlowBuilder()
|
||||
self.phi_injector = PhiInjector()
|
||||
|
||||
def translate (self, function, llvm_type = None, llvm_function = None,
|
||||
env = None):
|
||||
'''Translate a function to the given LLVM function type.
|
||||
|
||||
If no type is given, then assume the function is of LLVM type
|
||||
"void ()".
|
||||
|
||||
The optional env parameter allows extension of the global
|
||||
environment.'''
|
||||
if llvm_type is None:
|
||||
if llvm_function is None:
|
||||
llvm_type = lc.Type.function(bytetype.lvoid, ())
|
||||
else:
|
||||
llvm_type = llvm_function.type.pointee
|
||||
if env is None:
|
||||
env = {}
|
||||
else:
|
||||
env = env.copy()
|
||||
env.update((name, method)
|
||||
for name, method in lc.Builder.__dict__.items()
|
||||
if not name.startswith('_'))
|
||||
env.update((name, value)
|
||||
for name, value in bytetype.__dict__.items()
|
||||
if not name.startswith('_'))
|
||||
self.loop_stack = []
|
||||
self.llvm_type = llvm_type
|
||||
self.target_function_name = env.get('target_function_name',
|
||||
function.__name__)
|
||||
self.function = function
|
||||
self.code_obj = opcode_util.get_code_object(function)
|
||||
func_globals = getattr(function, 'func_globals',
|
||||
getattr(function, '__globals__', {})).copy()
|
||||
func_globals.update(env)
|
||||
self.globals = func_globals
|
||||
nargs = self.code_obj.co_argcount
|
||||
self.cfg = self.control_flow_builder.visit(
|
||||
opcode_util.build_basic_blocks(self.code_obj), nargs)
|
||||
self.cfg.blocks = self.bytecode_flow_builder.visit_cfg(self.cfg)
|
||||
self.llvm_function = llvm_function
|
||||
flow = self.phi_injector.visit_cfg(self.cfg, nargs)
|
||||
ret_val = self.visit(flow)
|
||||
del self.cfg
|
||||
del self.globals
|
||||
del self.code_obj
|
||||
del self.target_function_name
|
||||
del self.function
|
||||
del self.llvm_type
|
||||
del self.loop_stack
|
||||
return ret_val
|
||||
|
||||
def enter_flow_object (self, flow):
|
||||
super(LLVMTranslator, self).enter_flow_object(flow)
|
||||
if self.llvm_function is None:
|
||||
self.llvm_function = self.llvm_module.add_function(
|
||||
self.llvm_type, self.target_function_name)
|
||||
self.llvm_blocks = {}
|
||||
self.llvm_definitions = {}
|
||||
self.pending_phis = {}
|
||||
for block in self.block_list:
|
||||
if 0 in self.cfg.blocks_reaching[block]:
|
||||
bb = self.llvm_function.append_basic_block(
|
||||
'BLOCK_%d' % (block,))
|
||||
self.llvm_blocks[block] = bb
|
||||
|
||||
def exit_flow_object (self, flow):
|
||||
super(LLVMTranslator, self).exit_flow_object(flow)
|
||||
ret_val = self.llvm_function
|
||||
del self.pending_phis
|
||||
del self.llvm_definitions
|
||||
del self.llvm_blocks
|
||||
if __debug__ and logger.getEffectiveLevel() < logging.DEBUG:
|
||||
logger.debug(str(ret_val))
|
||||
return ret_val
|
||||
|
||||
def enter_block (self, block):
|
||||
ret_val = False
|
||||
if block in self.llvm_blocks:
|
||||
self.llvm_block = self.llvm_blocks[block]
|
||||
self.builder = lc.Builder.new(self.llvm_block)
|
||||
ret_val = True
|
||||
return ret_val
|
||||
|
||||
def exit_block (self, block):
|
||||
bb_instrs = self.llvm_block.instructions
|
||||
if ((len(bb_instrs) == 0) or
|
||||
(not bb_instrs[-1].is_terminator)):
|
||||
out_blocks = list(self.cfg.blocks_out[block])
|
||||
assert len(out_blocks) == 1
|
||||
self.builder.branch(self.llvm_blocks[out_blocks[0]])
|
||||
del self.llvm_block
|
||||
del self.builder
|
||||
|
||||
def visit_synthetic_op (self, i, op, arg, *args, **kws):
|
||||
method = getattr(self, 'op_%s' % (synthetic_opname[op],))
|
||||
return method(i, op, arg, *args, **kws)
|
||||
|
||||
def op_REF_ARG (self, i, op, arg, *args, **kws):
|
||||
return [self.llvm_function.args[arg]]
|
||||
|
||||
def op_BUILD_PHI (self, i, op, arg, *args, **kws):
|
||||
phi_type = None
|
||||
incoming = []
|
||||
pending = []
|
||||
for child_arg in arg:
|
||||
child_block, _, child_opname, child_arg, _ = child_arg
|
||||
assert child_opname == 'REF_DEF'
|
||||
if child_arg in self.llvm_definitions:
|
||||
child_def = self.llvm_definitions[child_arg]
|
||||
if phi_type is None:
|
||||
phi_type = child_def.type
|
||||
incoming.append((child_block, child_def))
|
||||
else:
|
||||
pending.append((child_arg, child_block))
|
||||
phi = self.builder.phi(phi_type)
|
||||
for block_index, defn in incoming:
|
||||
phi.add_incoming(defn, self.llvm_blocks[block_index])
|
||||
for defn_index, block_index in pending:
|
||||
if defn_index not in self.pending_phis:
|
||||
self.pending_phis[defn_index] = []
|
||||
self.pending_phis[defn_index].append((phi, block_index))
|
||||
return [phi]
|
||||
|
||||
def op_DEFINITION (self, i, op, def_index, *args, **kws):
|
||||
assert len(args) == 1
|
||||
arg = args[0]
|
||||
if def_index in self.pending_phis:
|
||||
for phi, block_index in self.pending_phis[def_index]:
|
||||
phi.add_incoming(arg, self.llvm_blocks[block_index])
|
||||
self.llvm_definitions[def_index] = arg
|
||||
return args
|
||||
|
||||
def op_REF_DEF (self, i, op, arg, *args, **kws):
|
||||
return [self.llvm_definitions[arg]]
|
||||
|
||||
def op_BINARY_ADD (self, i, op, arg, *args, **kws):
|
||||
arg1, arg2 = args
|
||||
if arg1.type.kind == lc.TYPE_INTEGER:
|
||||
ret_val = [self.builder.add(arg1, arg2)]
|
||||
elif arg1.type.kind in (lc.TYPE_FLOAT, lc.TYPE_DOUBLE):
|
||||
ret_val = [self.builder.fadd(arg1, arg2)]
|
||||
elif arg1.type.kind == lc.TYPE_POINTER:
|
||||
ret_val = [self.builder.gep(arg1, [arg2])]
|
||||
else:
|
||||
raise NotImplementedError("LLVMTranslator.op_BINARY_ADD for %r" %
|
||||
(args,))
|
||||
return ret_val
|
||||
|
||||
def op_BINARY_AND (self, i, op, arg, *args, **kws):
|
||||
return [self.builder.and_(args[0], args[1])]
|
||||
|
||||
def op_BINARY_DIVIDE (self, i, op, arg, *args, **kws):
|
||||
arg1, arg2 = args
|
||||
if arg1.type.kind == lc.TYPE_INTEGER:
|
||||
ret_val = [self.builder.sdiv(arg1, arg2)]
|
||||
elif arg1.type.kind in (lc.TYPE_FLOAT, lc.TYPE_DOUBLE):
|
||||
ret_val = [self.builder.fdiv(arg1, arg2)]
|
||||
else:
|
||||
raise NotImplementedError("LLVMTranslator.op_BINARY_DIVIDE for %r"
|
||||
% (args,))
|
||||
return ret_val
|
||||
|
||||
def op_BINARY_FLOOR_DIVIDE (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_BINARY_FLOOR_DIVIDE")
|
||||
|
||||
def op_BINARY_LSHIFT (self, i, op, arg, *args, **kws):
|
||||
return [self.builder.shl(args[0], args[1])]
|
||||
|
||||
def op_BINARY_MODULO (self, i, op, arg, *args, **kws):
|
||||
arg1, arg2 = args
|
||||
if arg1.type.kind == lc.TYPE_INTEGER:
|
||||
ret_val = [self.builder.srem(arg1, arg2)]
|
||||
elif arg1.type.kind in (lc.TYPE_FLOAT, lc.TYPE_DOUBLE):
|
||||
ret_val = [self.builder.frem(arg1, arg2)]
|
||||
else:
|
||||
raise NotImplementedError("LLVMTranslator.op_BINARY_MODULO for %r"
|
||||
% (args,))
|
||||
return ret_val
|
||||
|
||||
def op_BINARY_MULTIPLY (self, i, op, arg, *args, **kws):
|
||||
arg1, arg2 = args
|
||||
if arg1.type.kind == lc.TYPE_INTEGER:
|
||||
ret_val = [self.builder.mul(arg1, arg2)]
|
||||
elif arg1.type.kind in (lc.TYPE_FLOAT, lc.TYPE_DOUBLE):
|
||||
ret_val = [self.builder.fmul(arg1, arg2)]
|
||||
else:
|
||||
raise NotImplementedError("LLVMTranslator.op_BINARY_MULTIPLY for "
|
||||
"%r" % (args,))
|
||||
return ret_val
|
||||
|
||||
def op_BINARY_OR (self, i, op, arg, *args, **kws):
|
||||
return [self.builder.or_(args[0], args[1])]
|
||||
|
||||
def op_BINARY_POWER (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_BINARY_POWER")
|
||||
|
||||
def op_BINARY_RSHIFT (self, i, op, arg, *args, **kws):
|
||||
return [self.builder.lshr(args[0], args[1])]
|
||||
|
||||
def op_BINARY_SUBSCR (self, i, op, arg, *args, **kws):
|
||||
arr_val = args[0]
|
||||
index_vals = args[1:]
|
||||
ret_val = gep_result = self.builder.gep(arr_val, index_vals)
|
||||
if (gep_result.type.kind == lc.TYPE_POINTER and
|
||||
gep_result.type.pointee.kind != lc.TYPE_POINTER):
|
||||
ret_val = self.builder.load(gep_result)
|
||||
return [ret_val]
|
||||
|
||||
def op_BINARY_SUBTRACT (self, i, op, arg, *args, **kws):
|
||||
arg1, arg2 = args
|
||||
if arg1.type.kind == lc.TYPE_INTEGER:
|
||||
ret_val = [self.builder.sub(arg1, arg2)]
|
||||
elif arg1.type.kind in (lc.TYPE_FLOAT, lc.TYPE_DOUBLE):
|
||||
ret_val = [self.builder.fsub(arg1, arg2)]
|
||||
else:
|
||||
raise NotImplementedError("LLVMTranslator.op_BINARY_SUBTRACT for "
|
||||
"%r" % (args,))
|
||||
return ret_val
|
||||
|
||||
op_BINARY_TRUE_DIVIDE = op_BINARY_DIVIDE
|
||||
|
||||
def op_BINARY_XOR (self, i, op, arg, *args, **kws):
|
||||
return [self.builder.xor(args[0], args[1])]
|
||||
|
||||
def op_BREAK_LOOP (self, i, op, arg, *args, **kws):
|
||||
return [self.builder.branch(self.llvm_blocks[arg])]
|
||||
|
||||
def op_BUILD_SLICE (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_BUILD_SLICE")
|
||||
|
||||
def op_BUILD_TUPLE (self, i, op, arg, *args, **kws):
|
||||
return args
|
||||
|
||||
def op_CALL_FUNCTION (self, i, op, arg, *args, **kws):
|
||||
fn = args[0]
|
||||
args = args[1:]
|
||||
fn_name = getattr(fn, '__name__', None)
|
||||
if isinstance(fn, (types.FunctionType, types.MethodType)):
|
||||
ret_val = [fn(self.builder, *args)]
|
||||
elif isinstance(fn, lc.Value):
|
||||
ret_val = [self.builder.call(fn, args)]
|
||||
elif isinstance(fn, lc.Type):
|
||||
if isinstance(fn, lc.FunctionType):
|
||||
ret_val = [self.builder.call(
|
||||
self.llvm_module.get_or_insert_function(fn, fn_name),
|
||||
args)]
|
||||
else:
|
||||
assert len(args) == 1
|
||||
ret_val = [LLVMCaster.build_cast(self.builder, args[0], fn)]
|
||||
else:
|
||||
raise NotImplementedError("Don't know how to call %s() (%r @ %d)!"
|
||||
% (fn_name, fn, i))
|
||||
return ret_val
|
||||
|
||||
def op_CALL_FUNCTION_KW (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_CALL_FUNCTION_KW")
|
||||
|
||||
def op_CALL_FUNCTION_VAR (self, i, op, arg, *args, **kws):
|
||||
args = list(args)
|
||||
var_args = list(args.pop())
|
||||
args.extend(var_args)
|
||||
return self.op_CALL_FUNCTION(i, op, arg, *args, **kws)
|
||||
|
||||
def op_CALL_FUNCTION_VAR_KW (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_CALL_FUNCTION_VAR_KW")
|
||||
|
||||
def op_COMPARE_OP (self, i, op, arg, *args, **kws):
|
||||
arg1, arg2 = args
|
||||
cmp_kind = opcode.cmp_op[arg]
|
||||
if isinstance(arg1.type, lc.IntegerType):
|
||||
ret_val = [self.builder.icmp(_compare_mapping_sint[cmp_kind],
|
||||
arg1, arg2)]
|
||||
elif arg1.type.kind in (lc.TYPE_FLOAT, lc.TYPE_DOUBLE):
|
||||
ret_val = [self.builder.fcmp(_compare_mapping_float[cmp_kind],
|
||||
arg1, arg2)]
|
||||
else:
|
||||
raise NotImplementedError('Comparison of type %r' % (arg1.type,))
|
||||
return ret_val
|
||||
|
||||
def op_CONTINUE_LOOP (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_CONTINUE_LOOP")
|
||||
|
||||
def op_DELETE_ATTR (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_DELETE_ATTR")
|
||||
|
||||
def op_DELETE_SLICE (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_DELETE_SLICE")
|
||||
|
||||
def op_FOR_ITER (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_FOR_ITER")
|
||||
|
||||
def op_GET_ITER (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_GET_ITER")
|
||||
|
||||
op_INPLACE_ADD = op_BINARY_ADD
|
||||
op_INPLACE_AND = op_BINARY_AND
|
||||
op_INPLACE_DIVIDE = op_BINARY_DIVIDE
|
||||
op_INPLACE_FLOOR_DIVIDE = op_BINARY_FLOOR_DIVIDE
|
||||
op_INPLACE_LSHIFT = op_BINARY_LSHIFT
|
||||
op_INPLACE_MODULO = op_BINARY_MODULO
|
||||
op_INPLACE_MULTIPLY = op_BINARY_MULTIPLY
|
||||
op_INPLACE_OR = op_BINARY_OR
|
||||
op_INPLACE_POWER = op_BINARY_POWER
|
||||
op_INPLACE_RSHIFT = op_BINARY_RSHIFT
|
||||
op_INPLACE_SUBTRACT = op_BINARY_SUBTRACT
|
||||
op_INPLACE_TRUE_DIVIDE = op_BINARY_TRUE_DIVIDE
|
||||
op_INPLACE_XOR = op_BINARY_XOR
|
||||
|
||||
def op_JUMP_ABSOLUTE (self, i, op, arg, *args, **kws):
|
||||
return [self.builder.branch(self.llvm_blocks[arg])]
|
||||
|
||||
def op_JUMP_FORWARD (self, i, op, arg, *args, **kws):
|
||||
return [self.builder.branch(self.llvm_blocks[i + arg + 3])]
|
||||
|
||||
def op_JUMP_IF_FALSE (self, i, op, arg, *args, **kws):
|
||||
cond = args[0]
|
||||
block_false = self.llvm_blocks[i + 3 + arg]
|
||||
block_true = self.llvm_blocks[i + 3]
|
||||
return [self.builder.cbranch(cond, block_true, block_false)]
|
||||
# raise NotImplementedError("LLVMTranslator.op_JUMP_IF_FALSE")
|
||||
|
||||
def op_JUMP_IF_FALSE_OR_POP (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_JUMP_IF_FALSE_OR_POP")
|
||||
|
||||
def op_JUMP_IF_TRUE (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_JUMP_IF_TRUE")
|
||||
|
||||
def op_JUMP_IF_TRUE_OR_POP (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_JUMP_IF_TRUE_OR_POP")
|
||||
|
||||
def op_LOAD_ATTR (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_LOAD_ATTR")
|
||||
|
||||
def op_LOAD_CONST (self, i, op, arg, *args, **kws):
|
||||
py_val = self.code_obj.co_consts[arg]
|
||||
if isinstance(py_val, int):
|
||||
ret_val = [lc.Constant.int(bytetype.lc_int, py_val)]
|
||||
elif isinstance(py_val, float):
|
||||
ret_val = [lc.Constant.double(py_val)]
|
||||
elif py_val == None:
|
||||
ret_val = [None]
|
||||
else:
|
||||
raise NotImplementedError('Constant converstion for %r' %
|
||||
(py_val,))
|
||||
return ret_val
|
||||
|
||||
def op_LOAD_DEREF (self, i, op, arg, *args, **kws):
|
||||
name = self.code_obj.co_freevars[arg]
|
||||
ret_val = self.globals[name]
|
||||
if isinstance(ret_val, lc.Type) and not hasattr(ret_val, '__name__'):
|
||||
ret_val.__name__ = name
|
||||
return [ret_val]
|
||||
|
||||
def op_LOAD_GLOBAL (self, i, op, arg, *args, **kws):
|
||||
name = self.code_obj.co_names[arg]
|
||||
ret_val = self.globals[name]
|
||||
if isinstance(ret_val, lc.Type) and not hasattr(ret_val, '__name__'):
|
||||
ret_val.__name__ = name
|
||||
return [ret_val]
|
||||
|
||||
def op_POP_BLOCK (self, i, op, arg, *args, **kws):
|
||||
self.loop_stack.pop()
|
||||
return [self.builder.branch(self.llvm_blocks[i + 1])]
|
||||
|
||||
def op_POP_JUMP_IF_FALSE (self, i, op, arg, *args, **kws):
|
||||
return [self.builder.cbranch(args[0], self.llvm_blocks[i + 3],
|
||||
self.llvm_blocks[arg])]
|
||||
|
||||
def op_POP_JUMP_IF_TRUE (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_POP_JUMP_IF_TRUE")
|
||||
|
||||
def op_POP_TOP (self, i, op, arg, *args, **kws):
|
||||
return args
|
||||
|
||||
def op_RETURN_VALUE (self, i, op, arg, *args, **kws):
|
||||
if args[0] is None:
|
||||
ret_val = [self.builder.ret_void()]
|
||||
else:
|
||||
ret_val = [self.builder.ret(args[0])]
|
||||
return ret_val
|
||||
|
||||
def op_SETUP_LOOP (self, i, op, arg, *args, **kws):
|
||||
self.loop_stack.append((i, arg))
|
||||
return [self.builder.branch(self.llvm_blocks[i + 3])]
|
||||
|
||||
def op_SLICE (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_SLICE")
|
||||
|
||||
def op_STORE_ATTR (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_STORE_ATTR")
|
||||
|
||||
def op_STORE_SLICE (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_STORE_SLICE")
|
||||
|
||||
def op_STORE_SUBSCR (self, i, op, arg, *args, **kws):
|
||||
store_val, arr_val, index_val = args
|
||||
dest_addr = self.builder.gep(arr_val, [index_val])
|
||||
return [self.builder.store(store_val, dest_addr)]
|
||||
|
||||
def op_UNARY_CONVERT (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_UNARY_CONVERT")
|
||||
|
||||
def op_UNARY_INVERT (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_UNARY_INVERT")
|
||||
|
||||
def op_UNARY_NEGATIVE (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_UNARY_NEGATIVE")
|
||||
|
||||
def op_UNARY_NOT (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_UNARY_NOT")
|
||||
|
||||
def op_UNARY_POSITIVE (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_UNARY_POSITIVE")
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def translate_function (func, lltype, llvm_module = None, **kws):
|
||||
'''Given a function and an LLVM function type, emit LLVM code for
|
||||
that function using a new LLVMTranslator instance.'''
|
||||
translator = LLVMTranslator(llvm_module)
|
||||
ret_val = translator.translate(func, lltype, env = kws)
|
||||
return ret_val
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def translate_into_function (py_function, llvm_function, **kws):
|
||||
translator = LLVMTranslator(llvm_function.module)
|
||||
ret_val = translator.translate(py_function, llvm_function = llvm_function,
|
||||
env = kws)
|
||||
return ret_val
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def llpython (lltype, llvm_module = None, **kws):
|
||||
'''Decorator version of translate_function().'''
|
||||
def _llpython (func):
|
||||
return translate_function(func, lltype, llvm_module, **kws)
|
||||
return _llpython
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def llpython_into (llvm_function, **kws):
|
||||
def _llpython_into (func):
|
||||
return translate_into_function(llvm_function, func, **kws)
|
||||
return _llpython_into
|
||||
|
||||
# ______________________________________________________________________
|
||||
# Main (self-test) routine
|
||||
|
||||
def main (*args):
|
||||
from tests import llfuncs, llfunctys
|
||||
if not args:
|
||||
args = ('doslice',)
|
||||
elif 'all' in args:
|
||||
args = [llfunc
|
||||
for llfunc in dir(llfuncs) if not llfunc.startswith('_')]
|
||||
llvm_module = lc.Module.new('test_module')
|
||||
for arg in args:
|
||||
translate_function(getattr(llfuncs, arg), getattr(llfunctys, arg),
|
||||
llvm_module)
|
||||
print(llvm_module)
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
if __name__ == '__main__':
|
||||
import sys
|
||||
main(*sys.argv[1:])
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of byte_translator.py
|
||||
360
llpython/bytecode_visitor.py
Normal file
360
llpython/bytecode_visitor.py
Normal file
|
|
@ -0,0 +1,360 @@
|
|||
# ______________________________________________________________________
|
||||
from __future__ import absolute_import
|
||||
import itertools
|
||||
|
||||
import opcode
|
||||
from .opcode_util import itercode
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class BytecodeVisitor (object):
|
||||
opnames = [name.split('+')[0] for name in opcode.opname]
|
||||
|
||||
def visit_op (self, i, op, arg, *args, **kws):
|
||||
if op < 0:
|
||||
ret_val = self.visit_synthetic_op(i, op, arg, *args, **kws)
|
||||
else:
|
||||
method = getattr(self, 'op_' + self.opnames[op])
|
||||
ret_val = method(i, op, arg, *args, **kws)
|
||||
return ret_val
|
||||
|
||||
def visit_synthetic_op (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError(
|
||||
'BytecodeVisitor.visit_synthetic_op() must be overloaded if using '
|
||||
'synthetic opcodes.')
|
||||
|
||||
def _not_implemented (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("BytecodeVisitor.op_%s (@ bytecode index %d)"
|
||||
% (self.opnames[op], i))
|
||||
|
||||
op_BINARY_ADD = _not_implemented
|
||||
op_BINARY_AND = _not_implemented
|
||||
op_BINARY_DIVIDE = _not_implemented
|
||||
op_BINARY_FLOOR_DIVIDE = _not_implemented
|
||||
op_BINARY_LSHIFT = _not_implemented
|
||||
op_BINARY_MODULO = _not_implemented
|
||||
op_BINARY_MULTIPLY = _not_implemented
|
||||
op_BINARY_OR = _not_implemented
|
||||
op_BINARY_POWER = _not_implemented
|
||||
op_BINARY_RSHIFT = _not_implemented
|
||||
op_BINARY_SUBSCR = _not_implemented
|
||||
op_BINARY_SUBTRACT = _not_implemented
|
||||
op_BINARY_TRUE_DIVIDE = _not_implemented
|
||||
op_BINARY_XOR = _not_implemented
|
||||
op_BREAK_LOOP = _not_implemented
|
||||
op_BUILD_CLASS = _not_implemented
|
||||
op_BUILD_LIST = _not_implemented
|
||||
op_BUILD_MAP = _not_implemented
|
||||
op_BUILD_SET = _not_implemented
|
||||
op_BUILD_SLICE = _not_implemented
|
||||
op_BUILD_TUPLE = _not_implemented
|
||||
op_CALL_FUNCTION = _not_implemented
|
||||
op_CALL_FUNCTION_KW = _not_implemented
|
||||
op_CALL_FUNCTION_VAR = _not_implemented
|
||||
op_CALL_FUNCTION_VAR_KW = _not_implemented
|
||||
op_COMPARE_OP = _not_implemented
|
||||
op_CONTINUE_LOOP = _not_implemented
|
||||
op_DELETE_ATTR = _not_implemented
|
||||
op_DELETE_DEREF = _not_implemented
|
||||
op_DELETE_FAST = _not_implemented
|
||||
op_DELETE_GLOBAL = _not_implemented
|
||||
op_DELETE_NAME = _not_implemented
|
||||
op_DELETE_SLICE = _not_implemented
|
||||
op_DELETE_SUBSCR = _not_implemented
|
||||
op_DUP_TOP = _not_implemented
|
||||
op_DUP_TOPX = _not_implemented
|
||||
op_DUP_TOP_TWO = _not_implemented
|
||||
op_END_FINALLY = _not_implemented
|
||||
op_EXEC_STMT = _not_implemented
|
||||
op_EXTENDED_ARG = _not_implemented
|
||||
op_FOR_ITER = _not_implemented
|
||||
op_GET_ITER = _not_implemented
|
||||
op_IMPORT_FROM = _not_implemented
|
||||
op_IMPORT_NAME = _not_implemented
|
||||
op_IMPORT_STAR = _not_implemented
|
||||
op_INPLACE_ADD = _not_implemented
|
||||
op_INPLACE_AND = _not_implemented
|
||||
op_INPLACE_DIVIDE = _not_implemented
|
||||
op_INPLACE_FLOOR_DIVIDE = _not_implemented
|
||||
op_INPLACE_LSHIFT = _not_implemented
|
||||
op_INPLACE_MODULO = _not_implemented
|
||||
op_INPLACE_MULTIPLY = _not_implemented
|
||||
op_INPLACE_OR = _not_implemented
|
||||
op_INPLACE_POWER = _not_implemented
|
||||
op_INPLACE_RSHIFT = _not_implemented
|
||||
op_INPLACE_SUBTRACT = _not_implemented
|
||||
op_INPLACE_TRUE_DIVIDE = _not_implemented
|
||||
op_INPLACE_XOR = _not_implemented
|
||||
op_JUMP_ABSOLUTE = _not_implemented
|
||||
op_JUMP_FORWARD = _not_implemented
|
||||
op_JUMP_IF_FALSE = _not_implemented
|
||||
op_JUMP_IF_FALSE_OR_POP = _not_implemented
|
||||
op_JUMP_IF_TRUE = _not_implemented
|
||||
op_JUMP_IF_TRUE_OR_POP = _not_implemented
|
||||
op_LIST_APPEND = _not_implemented
|
||||
op_LOAD_ATTR = _not_implemented
|
||||
op_LOAD_BUILD_CLASS = _not_implemented
|
||||
op_LOAD_CLOSURE = _not_implemented
|
||||
op_LOAD_CONST = _not_implemented
|
||||
op_LOAD_DEREF = _not_implemented
|
||||
op_LOAD_FAST = _not_implemented
|
||||
op_LOAD_GLOBAL = _not_implemented
|
||||
op_LOAD_LOCALS = _not_implemented
|
||||
op_LOAD_NAME = _not_implemented
|
||||
op_MAKE_CLOSURE = _not_implemented
|
||||
op_MAKE_FUNCTION = _not_implemented
|
||||
op_MAP_ADD = _not_implemented
|
||||
op_NOP = _not_implemented
|
||||
op_POP_BLOCK = _not_implemented
|
||||
op_POP_EXCEPT = _not_implemented
|
||||
op_POP_JUMP_IF_FALSE = _not_implemented
|
||||
op_POP_JUMP_IF_TRUE = _not_implemented
|
||||
op_POP_TOP = _not_implemented
|
||||
op_PRINT_EXPR = _not_implemented
|
||||
op_PRINT_ITEM = _not_implemented
|
||||
op_PRINT_ITEM_TO = _not_implemented
|
||||
op_PRINT_NEWLINE = _not_implemented
|
||||
op_PRINT_NEWLINE_TO = _not_implemented
|
||||
op_RAISE_VARARGS = _not_implemented
|
||||
op_RETURN_VALUE = _not_implemented
|
||||
op_ROT_FOUR = _not_implemented
|
||||
op_ROT_THREE = _not_implemented
|
||||
op_ROT_TWO = _not_implemented
|
||||
op_SETUP_EXCEPT = _not_implemented
|
||||
op_SETUP_FINALLY = _not_implemented
|
||||
op_SETUP_LOOP = _not_implemented
|
||||
op_SETUP_WITH = _not_implemented
|
||||
op_SET_ADD = _not_implemented
|
||||
op_SLICE = _not_implemented
|
||||
op_STOP_CODE = _not_implemented
|
||||
op_STORE_ATTR = _not_implemented
|
||||
op_STORE_DEREF = _not_implemented
|
||||
op_STORE_FAST = _not_implemented
|
||||
op_STORE_GLOBAL = _not_implemented
|
||||
op_STORE_LOCALS = _not_implemented
|
||||
op_STORE_MAP = _not_implemented
|
||||
op_STORE_NAME = _not_implemented
|
||||
op_STORE_SLICE = _not_implemented
|
||||
op_STORE_SUBSCR = _not_implemented
|
||||
op_UNARY_CONVERT = _not_implemented
|
||||
op_UNARY_INVERT = _not_implemented
|
||||
op_UNARY_NEGATIVE = _not_implemented
|
||||
op_UNARY_NOT = _not_implemented
|
||||
op_UNARY_POSITIVE = _not_implemented
|
||||
op_UNPACK_EX = _not_implemented
|
||||
op_UNPACK_SEQUENCE = _not_implemented
|
||||
op_WITH_CLEANUP = _not_implemented
|
||||
op_YIELD_VALUE = _not_implemented
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class BytecodeIterVisitor (BytecodeVisitor):
|
||||
def visit (self, co_obj):
|
||||
self.enter_code_object(co_obj)
|
||||
for i, op, arg in itercode(co_obj.co_code):
|
||||
self.visit_op(i, op, arg)
|
||||
return self.exit_code_object(co_obj)
|
||||
|
||||
def enter_code_object (self, co_obj):
|
||||
pass
|
||||
|
||||
def exit_code_object (self, co_obj):
|
||||
pass
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class BasicBlockVisitor (BytecodeVisitor):
|
||||
def visit (self, blocks):
|
||||
self.enter_blocks(blocks)
|
||||
block_indices = list(blocks.keys())
|
||||
block_indices.sort()
|
||||
for block_index in block_indices:
|
||||
self.enter_block(block_index)
|
||||
for i, op, arg in blocks[block_index]:
|
||||
self.visit_op(i, op, arg)
|
||||
self.exit_block(block_index)
|
||||
return self.exit_blocks(blocks)
|
||||
|
||||
def enter_blocks (self, blocks):
|
||||
pass
|
||||
|
||||
def exit_blocks (self, blocks):
|
||||
pass
|
||||
|
||||
def enter_block (self, block_index):
|
||||
pass
|
||||
|
||||
def exit_block (self, block_index):
|
||||
pass
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class BytecodeFlowVisitor (BytecodeVisitor):
|
||||
def visit (self, flow):
|
||||
self.block_list = list(flow.keys())
|
||||
self.block_list.sort()
|
||||
self.enter_flow_object(flow)
|
||||
for block in self.block_list:
|
||||
prelude = self.enter_block(block)
|
||||
prelude_isa_list = isinstance(prelude, list)
|
||||
if prelude or prelude_isa_list:
|
||||
if not prelude_isa_list:
|
||||
prelude = []
|
||||
new_stmts = list(self.visit_op(i, op, arg, *args)
|
||||
for i, op, _, arg, args in flow[block])
|
||||
self.new_flow[block] = list(itertools.chain(
|
||||
prelude, *new_stmts))
|
||||
self.exit_block(block)
|
||||
del self.block_list
|
||||
return self.exit_flow_object(flow)
|
||||
|
||||
def visit_op (self, i, op, arg, *args, **kws):
|
||||
new_args = []
|
||||
for child_i, child_op, _, child_arg, child_args in args:
|
||||
new_args.extend(self.visit_op(child_i, child_op, child_arg,
|
||||
*child_args))
|
||||
ret_val = super(BytecodeFlowVisitor, self).visit_op(i, op, arg,
|
||||
*new_args)
|
||||
return ret_val
|
||||
|
||||
def enter_flow_object (self, flow):
|
||||
self.new_flow = {}
|
||||
|
||||
def exit_flow_object (self, flow):
|
||||
ret_val = self.new_flow
|
||||
del self.new_flow
|
||||
return ret_val
|
||||
|
||||
def enter_block (self, block):
|
||||
pass
|
||||
|
||||
def exit_block (self, block):
|
||||
pass
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class BenignBytecodeVisitorMixin (object):
|
||||
def _do_nothing (self, i, op, arg, *args, **kws):
|
||||
return [(i, op, self.opnames[op], arg, args)]
|
||||
|
||||
op_BINARY_ADD = _do_nothing
|
||||
op_BINARY_AND = _do_nothing
|
||||
op_BINARY_DIVIDE = _do_nothing
|
||||
op_BINARY_FLOOR_DIVIDE = _do_nothing
|
||||
op_BINARY_LSHIFT = _do_nothing
|
||||
op_BINARY_MODULO = _do_nothing
|
||||
op_BINARY_MULTIPLY = _do_nothing
|
||||
op_BINARY_OR = _do_nothing
|
||||
op_BINARY_POWER = _do_nothing
|
||||
op_BINARY_RSHIFT = _do_nothing
|
||||
op_BINARY_SUBSCR = _do_nothing
|
||||
op_BINARY_SUBTRACT = _do_nothing
|
||||
op_BINARY_TRUE_DIVIDE = _do_nothing
|
||||
op_BINARY_XOR = _do_nothing
|
||||
op_BREAK_LOOP = _do_nothing
|
||||
op_BUILD_CLASS = _do_nothing
|
||||
op_BUILD_LIST = _do_nothing
|
||||
op_BUILD_MAP = _do_nothing
|
||||
op_BUILD_SET = _do_nothing
|
||||
op_BUILD_SLICE = _do_nothing
|
||||
op_BUILD_TUPLE = _do_nothing
|
||||
op_CALL_FUNCTION = _do_nothing
|
||||
op_CALL_FUNCTION_KW = _do_nothing
|
||||
op_CALL_FUNCTION_VAR = _do_nothing
|
||||
op_CALL_FUNCTION_VAR_KW = _do_nothing
|
||||
op_COMPARE_OP = _do_nothing
|
||||
op_CONTINUE_LOOP = _do_nothing
|
||||
op_DELETE_ATTR = _do_nothing
|
||||
op_DELETE_DEREF = _do_nothing
|
||||
op_DELETE_FAST = _do_nothing
|
||||
op_DELETE_GLOBAL = _do_nothing
|
||||
op_DELETE_NAME = _do_nothing
|
||||
op_DELETE_SLICE = _do_nothing
|
||||
op_DELETE_SUBSCR = _do_nothing
|
||||
op_DUP_TOP = _do_nothing
|
||||
op_DUP_TOPX = _do_nothing
|
||||
op_DUP_TOP_TWO = _do_nothing
|
||||
op_END_FINALLY = _do_nothing
|
||||
op_EXEC_STMT = _do_nothing
|
||||
op_EXTENDED_ARG = _do_nothing
|
||||
op_FOR_ITER = _do_nothing
|
||||
op_GET_ITER = _do_nothing
|
||||
op_IMPORT_FROM = _do_nothing
|
||||
op_IMPORT_NAME = _do_nothing
|
||||
op_IMPORT_STAR = _do_nothing
|
||||
op_INPLACE_ADD = _do_nothing
|
||||
op_INPLACE_AND = _do_nothing
|
||||
op_INPLACE_DIVIDE = _do_nothing
|
||||
op_INPLACE_FLOOR_DIVIDE = _do_nothing
|
||||
op_INPLACE_LSHIFT = _do_nothing
|
||||
op_INPLACE_MODULO = _do_nothing
|
||||
op_INPLACE_MULTIPLY = _do_nothing
|
||||
op_INPLACE_OR = _do_nothing
|
||||
op_INPLACE_POWER = _do_nothing
|
||||
op_INPLACE_RSHIFT = _do_nothing
|
||||
op_INPLACE_SUBTRACT = _do_nothing
|
||||
op_INPLACE_TRUE_DIVIDE = _do_nothing
|
||||
op_INPLACE_XOR = _do_nothing
|
||||
op_JUMP_ABSOLUTE = _do_nothing
|
||||
op_JUMP_FORWARD = _do_nothing
|
||||
op_JUMP_IF_FALSE = _do_nothing
|
||||
op_JUMP_IF_FALSE_OR_POP = _do_nothing
|
||||
op_JUMP_IF_TRUE = _do_nothing
|
||||
op_JUMP_IF_TRUE_OR_POP = _do_nothing
|
||||
op_LIST_APPEND = _do_nothing
|
||||
op_LOAD_ATTR = _do_nothing
|
||||
op_LOAD_BUILD_CLASS = _do_nothing
|
||||
op_LOAD_CLOSURE = _do_nothing
|
||||
op_LOAD_CONST = _do_nothing
|
||||
op_LOAD_DEREF = _do_nothing
|
||||
op_LOAD_FAST = _do_nothing
|
||||
op_LOAD_GLOBAL = _do_nothing
|
||||
op_LOAD_LOCALS = _do_nothing
|
||||
op_LOAD_NAME = _do_nothing
|
||||
op_MAKE_CLOSURE = _do_nothing
|
||||
op_MAKE_FUNCTION = _do_nothing
|
||||
op_MAP_ADD = _do_nothing
|
||||
op_NOP = _do_nothing
|
||||
op_POP_BLOCK = _do_nothing
|
||||
op_POP_EXCEPT = _do_nothing
|
||||
op_POP_JUMP_IF_FALSE = _do_nothing
|
||||
op_POP_JUMP_IF_TRUE = _do_nothing
|
||||
op_POP_TOP = _do_nothing
|
||||
op_PRINT_EXPR = _do_nothing
|
||||
op_PRINT_ITEM = _do_nothing
|
||||
op_PRINT_ITEM_TO = _do_nothing
|
||||
op_PRINT_NEWLINE = _do_nothing
|
||||
op_PRINT_NEWLINE_TO = _do_nothing
|
||||
op_RAISE_VARARGS = _do_nothing
|
||||
op_RETURN_VALUE = _do_nothing
|
||||
op_ROT_FOUR = _do_nothing
|
||||
op_ROT_THREE = _do_nothing
|
||||
op_ROT_TWO = _do_nothing
|
||||
op_SETUP_EXCEPT = _do_nothing
|
||||
op_SETUP_FINALLY = _do_nothing
|
||||
op_SETUP_LOOP = _do_nothing
|
||||
op_SETUP_WITH = _do_nothing
|
||||
op_SET_ADD = _do_nothing
|
||||
op_SLICE = _do_nothing
|
||||
op_STOP_CODE = _do_nothing
|
||||
op_STORE_ATTR = _do_nothing
|
||||
op_STORE_DEREF = _do_nothing
|
||||
op_STORE_FAST = _do_nothing
|
||||
op_STORE_GLOBAL = _do_nothing
|
||||
op_STORE_LOCALS = _do_nothing
|
||||
op_STORE_MAP = _do_nothing
|
||||
op_STORE_NAME = _do_nothing
|
||||
op_STORE_SLICE = _do_nothing
|
||||
op_STORE_SUBSCR = _do_nothing
|
||||
op_UNARY_CONVERT = _do_nothing
|
||||
op_UNARY_INVERT = _do_nothing
|
||||
op_UNARY_NEGATIVE = _do_nothing
|
||||
op_UNARY_NOT = _do_nothing
|
||||
op_UNARY_POSITIVE = _do_nothing
|
||||
op_UNPACK_EX = _do_nothing
|
||||
op_UNPACK_SEQUENCE = _do_nothing
|
||||
op_WITH_CLEANUP = _do_nothing
|
||||
op_YIELD_VALUE = _do_nothing
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of bytecode_visitor.py
|
||||
42
llpython/bytetype.py
Normal file
42
llpython/bytetype.py
Normal file
|
|
@ -0,0 +1,42 @@
|
|||
# ______________________________________________________________________
|
||||
|
||||
import ctypes
|
||||
|
||||
import llvm.core as lc
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
lvoid = lc.Type.void()
|
||||
li1 = lc.Type.int(1)
|
||||
li8 = lc.Type.int(8)
|
||||
li16 = lc.Type.int(16)
|
||||
li32 = lc.Type.int(32)
|
||||
li64 = lc.Type.int(64)
|
||||
liptr = lc.Type.int(ctypes.sizeof(ctypes.c_void_p) * 8)
|
||||
lc_size_t = lc.Type.int(ctypes.sizeof(
|
||||
getattr(ctypes, 'c_ssize_t', getattr(ctypes, 'c_size_t'))) * 8)
|
||||
lfloat = lc.Type.float()
|
||||
ldouble = lc.Type.double()
|
||||
li8_ptr = lc.Type.pointer(li8)
|
||||
|
||||
lc_int = lc.Type.int(ctypes.sizeof(ctypes.c_int) * 8)
|
||||
lc_long = lc.Type.int(ctypes.sizeof(ctypes.c_long) * 8)
|
||||
|
||||
l_pyobject_head = [lc_size_t, lc.Type.pointer(li32)]
|
||||
l_pyobject_head_struct = lc.Type.struct(l_pyobject_head)
|
||||
l_pyobj_p = l_pyobject_head_struct_p = lc.Type.pointer(l_pyobject_head_struct)
|
||||
l_pyfunc = lc.Type.function(l_pyobj_p, (l_pyobj_p, l_pyobj_p))
|
||||
|
||||
strlen = lc.Type.function(lc_size_t, (li8_ptr,))
|
||||
strncpy = lc.Type.function(li8_ptr, (li8_ptr, li8_ptr, lc_size_t))
|
||||
strndup = lc.Type.function(li8_ptr, (li8_ptr, lc_size_t))
|
||||
malloc = lc.Type.function(li8_ptr, (lc_size_t,))
|
||||
free = lc.Type.function(lvoid, (li8_ptr,))
|
||||
|
||||
Py_BuildValue = lc.Type.function(l_pyobj_p, [li8_ptr], True)
|
||||
PyArg_ParseTuple = lc.Type.function(lc_int, [l_pyobj_p, li8_ptr], True)
|
||||
PyEval_SaveThread = lc.Type.function(li8_ptr, [])
|
||||
PyEval_RestoreThread = lc.Type.function(lc.Type.void(), [li8_ptr])
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of bytetype.py
|
||||
217
llpython/control_flow.py
Normal file
217
llpython/control_flow.py
Normal file
|
|
@ -0,0 +1,217 @@
|
|||
# ______________________________________________________________________
|
||||
|
||||
import pprint
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class ControlFlowGraph (object):
|
||||
def __init__ (self):
|
||||
self.blocks = {}
|
||||
self.blocks_in = {}
|
||||
self.blocks_out = {}
|
||||
self.blocks_reads = {}
|
||||
self.blocks_writes = {}
|
||||
self.blocks_writer = {}
|
||||
self.blocks_dom = {}
|
||||
self.blocks_reaching = {}
|
||||
|
||||
def add_block (self, key, value = None):
|
||||
self.blocks[key] = value
|
||||
if key not in self.blocks_in:
|
||||
self.blocks_in[key] = set()
|
||||
self.blocks_out[key] = set()
|
||||
self.blocks_reads[key] = set()
|
||||
self.blocks_writes[key] = set()
|
||||
self.blocks_writer[key] = {}
|
||||
|
||||
def add_edge (self, from_block, to_block):
|
||||
self.blocks_out[from_block].add(to_block)
|
||||
self.blocks_in[to_block].add(from_block)
|
||||
|
||||
def unlink_unreachables (self):
|
||||
changed = True
|
||||
next_blocks = self.blocks.keys()
|
||||
next_blocks.remove(0)
|
||||
while changed:
|
||||
changed = False
|
||||
blocks = next_blocks
|
||||
next_blocks = blocks[:]
|
||||
for block in blocks:
|
||||
if len(self.blocks_in[block]) == 0:
|
||||
blocks_out = self.blocks_out[block]
|
||||
for out_edge in blocks_out:
|
||||
self.blocks_in[out_edge].discard(block)
|
||||
blocks_out.clear()
|
||||
next_blocks.remove(block)
|
||||
changed = True
|
||||
|
||||
def compute_dataflow (self):
|
||||
'''Compute the dominator and reaching dataflow relationships
|
||||
in the CFG.'''
|
||||
blocks = set(self.blocks.keys())
|
||||
nonentry_blocks = blocks.copy()
|
||||
for block in blocks:
|
||||
self.blocks_dom[block] = blocks
|
||||
self.blocks_reaching[block] = set((block,))
|
||||
if len(self.blocks_in[block]) == 0:
|
||||
self.blocks_dom[block] = set((block,))
|
||||
nonentry_blocks.remove(block)
|
||||
changed = True
|
||||
while changed:
|
||||
changed = False
|
||||
for block in nonentry_blocks:
|
||||
olddom = self.blocks_dom[block]
|
||||
newdom = set.intersection(*[self.blocks_dom[pred]
|
||||
for pred in self.blocks_in[block]])
|
||||
newdom.add(block)
|
||||
if newdom != olddom:
|
||||
changed = True
|
||||
self.blocks_dom[block] = newdom
|
||||
oldreaching = self.blocks_reaching[block]
|
||||
newreaching = set.union(
|
||||
*[self.blocks_reaching[pred]
|
||||
for pred in self.blocks_in[block]])
|
||||
newreaching.add(block)
|
||||
if newreaching != oldreaching:
|
||||
changed = True
|
||||
self.blocks_reaching[block] = newreaching
|
||||
return self.blocks_dom, self.blocks_reaching
|
||||
|
||||
def update_for_ssa (self):
|
||||
'''Modify the blocks_writes map to reflect phi nodes inserted
|
||||
for static single assignment representations.'''
|
||||
joins = [block for block in self.blocks.keys()
|
||||
if len(self.blocks_in[block]) > 1]
|
||||
changed = True
|
||||
while changed:
|
||||
changed = False
|
||||
for block in joins:
|
||||
phis_needed = self.phi_needed(block)
|
||||
for affected_local in phis_needed:
|
||||
if affected_local not in self.blocks_writes[block]:
|
||||
changed = True
|
||||
# NOTE: For this to work, we assume that basic
|
||||
# blocks are indexed by their instruction
|
||||
# index in the VM bytecode.
|
||||
self.writes_local(block, block, affected_local)
|
||||
if changed:
|
||||
# Any modifications have invalidated the reaching
|
||||
# definitions, so delete any memoized results.
|
||||
if hasattr(self, 'reaching_definitions'):
|
||||
del self.reaching_definitions
|
||||
|
||||
def idom (self, block):
|
||||
'''Compute the immediate dominator (idom) of the given block
|
||||
key. Returns None if the block has no in edges.
|
||||
|
||||
Note that in the case where there are multiple immediate
|
||||
dominators (a join after a non-loop branch), this returns one
|
||||
of the predecessors, but is not guaranteed to reliably select
|
||||
one over the others (depends on the ordering of the set type
|
||||
iterator).'''
|
||||
preds = self.blocks_in[block]
|
||||
npreds = len(preds)
|
||||
if npreds == 0:
|
||||
ret_val = None
|
||||
elif npreds == 1:
|
||||
ret_val = tuple(preds)[0]
|
||||
else:
|
||||
ret_val = [pred for pred in preds
|
||||
if block not in self.blocks_dom[pred]][0]
|
||||
return ret_val
|
||||
|
||||
def block_writes_to_writer_map (self, block):
|
||||
ret_val = {}
|
||||
for local in self.blocks_writes[block]:
|
||||
ret_val[local] = block
|
||||
return ret_val
|
||||
|
||||
def get_reaching_definitions (self, block):
|
||||
'''Return a nested map for the given block
|
||||
s.t. ret_val[pred][local] equals the block key for the
|
||||
definition of local that reaches the argument block via that
|
||||
predecessor.
|
||||
|
||||
Useful for actually populating phi nodes, once you know you
|
||||
need them.'''
|
||||
has_memoized = hasattr(self, 'reaching_definitions')
|
||||
if has_memoized and block in self.reaching_definitions:
|
||||
ret_val = self.reaching_definitions[block]
|
||||
else:
|
||||
preds = self.blocks_in[block]
|
||||
ret_val = {}
|
||||
for pred in preds:
|
||||
ret_val[pred] = self.block_writes_to_writer_map(pred)
|
||||
crnt = self.idom(pred)
|
||||
while crnt != None:
|
||||
crnt_writer_map = self.block_writes_to_writer_map(crnt)
|
||||
# This order of update favors the first definitions
|
||||
# encountered in the traversal since the traversal
|
||||
# visits blocks in reverse execution order.
|
||||
crnt_writer_map.update(ret_val[pred])
|
||||
ret_val[pred] = crnt_writer_map
|
||||
crnt = self.idom(crnt)
|
||||
if not has_memoized:
|
||||
self.reaching_definitions = {}
|
||||
self.reaching_definitions[block] = ret_val
|
||||
return ret_val
|
||||
|
||||
def nreaches (self, block):
|
||||
'''For each local, find the number of unique reaching
|
||||
definitions the current block has.'''
|
||||
reaching_definitions = self.get_reaching_definitions(block)
|
||||
definition_map = {}
|
||||
for pred in self.blocks_in[block]:
|
||||
reaching_from_pred = reaching_definitions[pred]
|
||||
for local in reaching_from_pred.keys():
|
||||
if local not in definition_map:
|
||||
definition_map[local] = set()
|
||||
definition_map[local].add(reaching_from_pred[local])
|
||||
ret_val = {}
|
||||
for local in definition_map.keys():
|
||||
ret_val[local] = len(definition_map[local])
|
||||
return ret_val
|
||||
|
||||
def writes_local (self, block, write_instr_index, local_index):
|
||||
self.blocks_writes[block].add(local_index)
|
||||
block_writers = self.blocks_writer[block]
|
||||
old_index = block_writers.get(local_index, -1)
|
||||
# This checks for a corner case that would impact
|
||||
# numba.translate.Translate.build_phi_nodes().
|
||||
assert old_index != write_instr_index, (
|
||||
"Found corner case for STORE_FAST at a CFG join!")
|
||||
block_writers[local_index] = max(write_instr_index, old_index)
|
||||
|
||||
def phi_needed (self, join):
|
||||
'''Return the set of locals that will require a phi node to be
|
||||
generated at the given join.'''
|
||||
nreaches = self.nreaches(join)
|
||||
return set([local for local in nreaches.keys()
|
||||
if nreaches[local] > 1])
|
||||
|
||||
def pprint (self, *args, **kws):
|
||||
pprint.pprint(self.__dict__, *args, **kws)
|
||||
|
||||
def pformat (self, *args, **kws):
|
||||
return pprint.pformat(self.__dict__, *args, **kws)
|
||||
|
||||
def to_dot (self, graph_name = None):
|
||||
'''Return a dot (digraph visualizer in Graphviz) graph
|
||||
description as a string.'''
|
||||
if graph_name is None:
|
||||
graph_name = 'CFG_%d' % id(self)
|
||||
lines_out = []
|
||||
for block_index in self.blocks:
|
||||
lines_out.append(
|
||||
'BLOCK_%r [shape=box, label="BLOCK_%r\\nr: %r, w: %r"];' %
|
||||
(block_index, block_index,
|
||||
tuple(self.blocks_reads[block_index]),
|
||||
tuple(self.blocks_writes[block_index])))
|
||||
for block_index in self.blocks:
|
||||
for out_edge in self.blocks_out[block_index]:
|
||||
lines_out.append('BLOCK_%r -> BLOCK_%r;' %
|
||||
(block_index, out_edge))
|
||||
return 'digraph %s {\n%s\n}\n' % (graph_name, '\n'.join(lines_out))
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of control_flow.py
|
||||
26
llpython/gen_bytecode_visitor.py
Normal file
26
llpython/gen_bytecode_visitor.py
Normal file
|
|
@ -0,0 +1,26 @@
|
|||
# ______________________________________________________________________
|
||||
from __future__ import absolute_import
|
||||
from . import opcode_util
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def generate_bytecode_visitor (classname = 'BytecodeVisitor',
|
||||
baseclass = 'object'):
|
||||
opnames = list(set((opname.split('+')[0]
|
||||
for opname in opcode_util.OPCODE_MAP.keys())))
|
||||
opnames.sort()
|
||||
return 'class %s (%s):\n%s\n' % (
|
||||
classname, baseclass,
|
||||
'\n\n'.join((' def op_%s (self, i, op, arg):\n'
|
||||
' raise NotImplementedError("%s.op_%s")' %
|
||||
(opname, classname, opname)
|
||||
for opname in opnames)))
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
if __name__ == "__main__":
|
||||
import sys
|
||||
print(generate_bytecode_visitor(*sys.argv[1:]))
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of gen_bytecode_visitor.py
|
||||
367
llpython/nobitey.py
Normal file
367
llpython/nobitey.py
Normal file
|
|
@ -0,0 +1,367 @@
|
|||
# ______________________________________________________________________
|
||||
from __future__ import absolute_import
|
||||
import sys
|
||||
import os.path
|
||||
import imp
|
||||
import io
|
||||
import types
|
||||
|
||||
import llvm.core as lc
|
||||
import llvm.ee as le
|
||||
|
||||
from . import bytetype, byte_translator
|
||||
from .pyaddfunc import pyaddfunc
|
||||
|
||||
LLVM_TO_INT_PARSE_STR_MAP = {
|
||||
8 : 'b',
|
||||
16 : 'h',
|
||||
32 : 'i', # Note that on 32-bit systems sizeof(int) == sizeof(long)
|
||||
64 : 'L', # Seeing sizeof(long long) == 8 on both 32 and 64-bit platforms
|
||||
}
|
||||
|
||||
LLVM_TO_PARSE_STR_MAP = {
|
||||
lc.TYPE_FLOAT : 'f',
|
||||
lc.TYPE_DOUBLE : 'd',
|
||||
}
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
# XXX Stolen from numba.translate
|
||||
|
||||
def get_string_constant (module, const_str):
|
||||
const_name = "__STR_%x" % (hash(const_str),)
|
||||
try:
|
||||
ret_val = module.get_global_variable_named(const_name)
|
||||
except:
|
||||
lconst_str = lc.Constant.stringz(const_str)
|
||||
ret_val = module.add_global_variable(lconst_str.type, const_name)
|
||||
ret_val.initializer = lconst_str
|
||||
ret_val.linkage = lc.LINKAGE_INTERNAL
|
||||
return ret_val
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class NoBitey (object):
|
||||
def __init__ (self, target_module = None, type_annotations = None):
|
||||
if target_module is None:
|
||||
target_module = lc.Module.new('NoBitey_%d' % id(self))
|
||||
if type_annotations is None:
|
||||
type_annotations = {}
|
||||
self.target_module = target_module
|
||||
self.type_aliases = type_annotations # Reserved for future use.
|
||||
|
||||
def _build_parse_string (self, llvm_type):
|
||||
kind = llvm_type.kind
|
||||
if kind == lc.TYPE_INTEGER:
|
||||
ret_val = LLVM_TO_INT_PARSE_STR_MAP[llvm_type.width]
|
||||
elif kind in LLVM_TO_PARSE_STR_MAP:
|
||||
ret_val = LLVM_TO_PARSE_STR_MAP[kind]
|
||||
else:
|
||||
raise TypeError('Unsupported LLVM type: %s' % str(llvm_type))
|
||||
return ret_val
|
||||
|
||||
def build_parse_string (self, llvm_tys):
|
||||
"""Given a set of LLVM types, return a string for parsing
|
||||
them via PyArg_ParseTuple."""
|
||||
return ''.join((self._build_parse_string(ty)
|
||||
for ty in llvm_tys))
|
||||
|
||||
def handle_abi_casts (self, builder, result):
|
||||
if result.type.kind == lc.TYPE_FLOAT:
|
||||
# NOTE: The C ABI apparently casts floats to doubles when
|
||||
# an argument must be pushed on the stack, as is the case
|
||||
# when calling a variable argument function.
|
||||
# XXX Is there documentation on this where I can find all
|
||||
# coercion rules? Do we still need some libffi
|
||||
# integration?
|
||||
result = builder.fpext(result, bytetype.ldouble)
|
||||
return result
|
||||
|
||||
def build_wrapper_function (self, llvm_function, engine = None):
|
||||
arg_types = llvm_function.type.pointee.args
|
||||
return_type = llvm_function.type.pointee.return_type
|
||||
li32_0 = lc.Constant.int(bytetype.li32, 0)
|
||||
def get_llvm_function (builder):
|
||||
if self.target_module != llvm_function.module:
|
||||
llvm_function_ptr = self.target_module.add_global_variable(
|
||||
llvm_function.type, llvm_function.name)
|
||||
llvm_function_ptr.initializer = lc.Constant.inttoptr(
|
||||
lc.Constant.int(
|
||||
bytetype.liptr,
|
||||
engine.get_pointer_to_function(llvm_function)),
|
||||
llvm_function.type)
|
||||
llvm_function_ptr.linkage = lc.LINKAGE_INTERNAL
|
||||
ret_val = builder.load(llvm_function_ptr)
|
||||
else:
|
||||
ret_val = llvm_function
|
||||
return ret_val
|
||||
def build_parse_args (builder):
|
||||
return [builder.alloca(arg_type) for arg_type in arg_types]
|
||||
def build_parse_string (builder):
|
||||
parse_str = get_string_constant(
|
||||
self.target_module, self.build_parse_string(arg_types))
|
||||
return builder.gep(parse_str, (li32_0, li32_0))
|
||||
def load_target_args (builder, args):
|
||||
return [builder.load(arg) for arg in args]
|
||||
def build_build_string (builder):
|
||||
build_str = get_string_constant(
|
||||
self.target_module, self._build_parse_string(return_type))
|
||||
return builder.gep(build_str, (li32_0, li32_0))
|
||||
handle_abi_casts = self.handle_abi_casts
|
||||
target_function_name = llvm_function.name + "_wrapper"
|
||||
# __________________________________________________
|
||||
@byte_translator.llpython(bytetype.l_pyfunc, self.target_module,
|
||||
**locals())
|
||||
def _wrapper (self, args):
|
||||
ret_val = l_pyobj_p(0)
|
||||
parse_args = build_parse_args()
|
||||
parse_result = PyArg_ParseTuple(args, build_parse_string(),
|
||||
*parse_args)
|
||||
if parse_result != li32(0):
|
||||
thread_state = PyEval_SaveThread()
|
||||
target_args = load_target_args(parse_args)
|
||||
llresult = handle_abi_casts(get_llvm_function()(*target_args))
|
||||
PyEval_RestoreThread(thread_state)
|
||||
ret_val = Py_BuildValue(build_build_string(), llresult)
|
||||
return ret_val
|
||||
# __________________________________________________
|
||||
return _wrapper
|
||||
|
||||
def wrap_llvm_module (self, llvm_module, engine = None, py_module = None):
|
||||
'''
|
||||
Shamefully adapted from bitey.bind.wrap_llvm_module().
|
||||
'''
|
||||
functions = [func for func in llvm_module.functions
|
||||
if not func.name.startswith("_")
|
||||
and not func.is_declaration
|
||||
and func.linkage == lc.LINKAGE_EXTERNAL]
|
||||
if engine is None:
|
||||
engine = le.ExecutionEngine.new(llvm_module)
|
||||
wrappers = [self.build_wrapper_function(func, engine)
|
||||
for func in functions]
|
||||
if __debug__: print(self.target_module)
|
||||
if self.target_module != llvm_module:
|
||||
engine.add_module(self.target_module)
|
||||
py_wrappers = [pyaddfunc(wrapper.name,
|
||||
engine.get_pointer_to_function(wrapper))
|
||||
for wrapper in wrappers]
|
||||
if py_module:
|
||||
for py_wrapper in py_wrappers:
|
||||
setattr(py_module, py_wrapper.__name__[:-8], py_wrapper)
|
||||
setattr(py_module, '_llvm_module', llvm_module)
|
||||
setattr(py_module, '_llvm_engine', engine)
|
||||
if self.target_module != llvm_module:
|
||||
setattr(py_module, '_llvm_wrappers', self.target_module)
|
||||
return engine, py_wrappers
|
||||
|
||||
def wrap_llvm_module_in_python (self, llvm_module, py_module = None):
|
||||
'''
|
||||
Mildly reworked and abstracted bitey.bind.wrap_llvm_bitcode().
|
||||
Abstracted to accept any existing LLVM Module object, and
|
||||
return a Python wrapper module (even if one wasn't originally
|
||||
specified).
|
||||
'''
|
||||
if py_module is None:
|
||||
py_module = types.ModuleType(str(llvm_module.id))
|
||||
engine = le.ExecutionEngine.new(llvm_module)
|
||||
self.wrap_llvm_module(llvm_module, engine, py_module)
|
||||
return py_module
|
||||
|
||||
def wrap_llvm_bitcode (self, bitcode, py_module = None):
|
||||
'''
|
||||
Intended to be drop-in replacement of
|
||||
bitey.bind.wrap_llvm_bitcode().
|
||||
'''
|
||||
return self.wrap_llvm_module_in_python(
|
||||
lc.Module.from_bitcode(io.BytesIO(bitcode)), py_module)
|
||||
|
||||
def wrap_llvm_assembly (self, llvm_asm, py_module = None):
|
||||
return self.wrap_llvm_module_in_python(
|
||||
lc.Module.from_assembly(io.BytesIO(llvm_asm)), py_module)
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class NoBiteyLoader(object):
|
||||
"""
|
||||
Load LLVM compiled bitcode and autogenerate a ctypes binding.
|
||||
|
||||
Initially copied and adapted from bitey.loader module.
|
||||
"""
|
||||
def __init__(self, pkg, name, source, preload, postload):
|
||||
self.package = pkg
|
||||
self.name = name
|
||||
self.fullname = '.'.join((pkg,name))
|
||||
self.source = source
|
||||
self.preload = preload
|
||||
self.postload = postload
|
||||
|
||||
@classmethod
|
||||
def _check_magic(cls, filename):
|
||||
if os.path.exists(filename):
|
||||
magic = open(filename,"rb").read(4)
|
||||
if magic == b'\xde\xc0\x17\x0b':
|
||||
return True
|
||||
elif magic[:2] == b'\x42\x43':
|
||||
return True
|
||||
else:
|
||||
return False
|
||||
else:
|
||||
return False
|
||||
|
||||
@classmethod
|
||||
def build_module(cls, fullname, source_path, source_data, preload=None,
|
||||
postload=None):
|
||||
name = fullname.split(".")[-1]
|
||||
mod = imp.new_module(name)
|
||||
if preload:
|
||||
exec(preload, mod.__dict__, mod.__dict__)
|
||||
type_annotations = getattr(mod, '_type_annotations', None)
|
||||
nb = NoBitey(type_annotations = type_annotations)
|
||||
if source_path.endswith(('.o', '.bc')):
|
||||
nb.wrap_llvm_bitcode(source_data, mod)
|
||||
elif source_path.endswith('.s'):
|
||||
nb.wrap_llvm_assembly(source_data, mod)
|
||||
if postload:
|
||||
exec(postload, mod.__dict__, mod.__dict__)
|
||||
return mod
|
||||
|
||||
@classmethod
|
||||
def find_module(cls, fullname, paths = None):
|
||||
if paths is None:
|
||||
paths = sys.path
|
||||
names = fullname.split('.')
|
||||
modname = names[-1]
|
||||
source_paths = None
|
||||
for f in paths:
|
||||
path = os.path.join(os.path.realpath(f), modname)
|
||||
source = path + '.o'
|
||||
if cls._check_magic(source):
|
||||
source_paths = path, source
|
||||
break
|
||||
source = path + '.bc'
|
||||
if os.path.exists(source):
|
||||
source_paths = path, source
|
||||
break
|
||||
source = path + '.s'
|
||||
if os.path.exists(source):
|
||||
source_paths = path, source
|
||||
break
|
||||
if source_paths:
|
||||
path, source = source_paths
|
||||
return cls('.'.join(names[:-1]), modname, source,
|
||||
path + ".pre.py", path + ".post.py")
|
||||
|
||||
def get_code(self, module):
|
||||
pass
|
||||
|
||||
def get_data(self, module):
|
||||
pass
|
||||
|
||||
def get_filename(self, name):
|
||||
return self.source
|
||||
|
||||
def get_source(self, name):
|
||||
with open(self.source, 'rb') as f:
|
||||
return f.read()
|
||||
|
||||
def is_package(self, *args, **kw):
|
||||
return False
|
||||
|
||||
def load_module(self, fullname):
|
||||
if fullname in sys.modules:
|
||||
return sys.modules[fullname]
|
||||
|
||||
preload = None
|
||||
postload = None
|
||||
|
||||
# Get the preload file (if any)
|
||||
if os.path.exists(self.preload):
|
||||
with open(self.preload) as f:
|
||||
preload = f.read()
|
||||
|
||||
# Get the source
|
||||
with open(self.source, 'rb') as f:
|
||||
source_data = f.read()
|
||||
|
||||
# Get the postload file (if any)
|
||||
if os.path.exists(self.postload):
|
||||
with open(self.postload) as f:
|
||||
postload = f.read()
|
||||
|
||||
mod = self.build_module(fullname, self.get_filename(None), source_data,
|
||||
preload, postload)
|
||||
sys.modules[fullname] = mod
|
||||
mod.__loader__ = self
|
||||
mod.__file__ = self.source
|
||||
return mod
|
||||
|
||||
@classmethod
|
||||
def install(cls):
|
||||
if cls not in sys.meta_path:
|
||||
sys.meta_path.append(cls)
|
||||
|
||||
@classmethod
|
||||
def remove(cls):
|
||||
sys.meta_path.remove(cls)
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def _mk_add_42 (llvm_module, at_type = bytetype.lc_long):
|
||||
f = llvm_module.add_function(
|
||||
lc.Type.function(at_type, [at_type]), 'add_42_%s' % str(at_type))
|
||||
block = f.append_basic_block('entry')
|
||||
builder = lc.Builder.new(block)
|
||||
if at_type.kind == lc.TYPE_INTEGER:
|
||||
const_42 = lc.Constant.int(at_type, 42)
|
||||
add = builder.add
|
||||
elif at_type.kind in (lc.TYPE_FLOAT, lc.TYPE_DOUBLE):
|
||||
const_42 = lc.Constant.real(at_type, 42.)
|
||||
add = builder.fadd
|
||||
else:
|
||||
raise TypeError('Unsupported type: %s' % str(at_type))
|
||||
builder.ret(add(f.args[0], const_42))
|
||||
return f
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def build_test_module ():
|
||||
llvm_module = lc.Module.new('nobitey_test')
|
||||
for ty in (bytetype.li32, bytetype.li64, bytetype.lfloat,
|
||||
bytetype.ldouble):
|
||||
fn = _mk_add_42(llvm_module, ty)
|
||||
return llvm_module
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def test_wrap_module (arg = None):
|
||||
# Build up a module.
|
||||
m = build_test_module()
|
||||
if arg and arg.lower() == 'separated':
|
||||
wrap_module = NoBitey().wrap_llvm_module_in_python(m)
|
||||
else:
|
||||
wrap_module = NoBitey(m).wrap_llvm_module_in_python(m)
|
||||
# Now try running the generated wrappers.
|
||||
for py_wf_name in ('add_42_i32', 'add_42_i64', 'add_42_float',
|
||||
'add_42_double'):
|
||||
py_wf = getattr(wrap_module, py_wf_name)
|
||||
for i in range(42):
|
||||
result = py_wf(i)
|
||||
expected = i + 42
|
||||
assert result == expected, "%r != %r in %r" % (
|
||||
result, expected, py_wf)
|
||||
return wrap_module
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def main (*args):
|
||||
if args:
|
||||
for arg in args:
|
||||
test_wrap_module(arg)
|
||||
else:
|
||||
test_wrap_module()
|
||||
|
||||
if __name__ == "__main__":
|
||||
main(*sys.argv[1:])
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of nobitey.py
|
||||
225
llpython/opcode_util.py
Normal file
225
llpython/opcode_util.py
Normal file
|
|
@ -0,0 +1,225 @@
|
|||
# ______________________________________________________________________
|
||||
|
||||
import dis
|
||||
import opcode
|
||||
|
||||
# ______________________________________________________________________
|
||||
# Module data
|
||||
|
||||
hasjump = opcode.hasjrel + opcode.hasjabs
|
||||
hascbranch = [op for op in hasjump
|
||||
if 'IF' in opcode.opname[op]
|
||||
or opcode.opname[op] in ('FOR_ITER', 'SETUP_LOOP')]
|
||||
|
||||
# Since the actual opcode value may change, manage opcode abstraction
|
||||
# data by opcode name.
|
||||
|
||||
OPCODE_MAP = {
|
||||
'BINARY_ADD': (2, 1, None),
|
||||
'BINARY_AND': (2, 1, None),
|
||||
'BINARY_DIVIDE': (2, 1, None),
|
||||
'BINARY_FLOOR_DIVIDE': (2, 1, None),
|
||||
'BINARY_LSHIFT': (2, 1, None),
|
||||
'BINARY_MODULO': (2, 1, None),
|
||||
'BINARY_MULTIPLY': (2, 1, None),
|
||||
'BINARY_OR': (2, 1, None),
|
||||
'BINARY_POWER': (2, 1, None),
|
||||
'BINARY_RSHIFT': (2, 1, None),
|
||||
'BINARY_SUBSCR': (2, 1, None),
|
||||
'BINARY_SUBTRACT': (2, 1, None),
|
||||
'BINARY_TRUE_DIVIDE': (2, 1, None),
|
||||
'BINARY_XOR': (2, 1, None),
|
||||
'BREAK_LOOP': (0, None, 1),
|
||||
'BUILD_CLASS': (None, None, None),
|
||||
'BUILD_LIST': (-1, 1, None),
|
||||
'BUILD_MAP': (None, None, None),
|
||||
'BUILD_SET': (None, None, None),
|
||||
'BUILD_SLICE': (None, None, None),
|
||||
'BUILD_TUPLE': (-1, 1, None),
|
||||
'CALL_FUNCTION': (-2, 1, None),
|
||||
'CALL_FUNCTION_KW': (-3, 1, None),
|
||||
'CALL_FUNCTION_VAR': (-3, 1, None),
|
||||
'CALL_FUNCTION_VAR_KW': (-4, 1, None),
|
||||
'COMPARE_OP': (2, 1, None),
|
||||
'CONTINUE_LOOP': (None, None, None),
|
||||
'DELETE_ATTR': (1, None, 1),
|
||||
'DELETE_DEREF': (None, None, None),
|
||||
'DELETE_FAST': (0, None, 1),
|
||||
'DELETE_GLOBAL': (0, None, 1),
|
||||
'DELETE_NAME': (0, None, 1),
|
||||
'DELETE_SLICE+0': (1, None, 1),
|
||||
'DELETE_SLICE+1': (2, None, 1),
|
||||
'DELETE_SLICE+2': (2, None, 1),
|
||||
'DELETE_SLICE+3': (3, None, 1),
|
||||
'DELETE_SUBSCR': (2, None, 1),
|
||||
'DUP_TOP': (None, None, None),
|
||||
'DUP_TOPX': (None, None, None),
|
||||
'DUP_TOP_TWO': (None, None, None),
|
||||
'END_FINALLY': (None, None, None),
|
||||
'EXEC_STMT': (None, None, None),
|
||||
'EXTENDED_ARG': (None, None, None),
|
||||
'FOR_ITER': (1, 1, 1),
|
||||
'GET_ITER': (1, 1, None),
|
||||
'IMPORT_FROM': (None, None, None),
|
||||
'IMPORT_NAME': (None, None, None),
|
||||
'IMPORT_STAR': (1, None, 1),
|
||||
'INPLACE_ADD': (2, 1, None),
|
||||
'INPLACE_AND': (2, 1, None),
|
||||
'INPLACE_DIVIDE': (2, 1, None),
|
||||
'INPLACE_FLOOR_DIVIDE': (2, 1, None),
|
||||
'INPLACE_LSHIFT': (2, 1, None),
|
||||
'INPLACE_MODULO': (2, 1, None),
|
||||
'INPLACE_MULTIPLY': (2, 1, None),
|
||||
'INPLACE_OR': (2, 1, None),
|
||||
'INPLACE_POWER': (2, 1, None),
|
||||
'INPLACE_RSHIFT': (2, 1, None),
|
||||
'INPLACE_SUBTRACT': (2, 1, None),
|
||||
'INPLACE_TRUE_DIVIDE': (2, 1, None),
|
||||
'INPLACE_XOR': (2, 1, None),
|
||||
'JUMP_ABSOLUTE': (0, None, 1),
|
||||
'JUMP_FORWARD': (0, None, 1),
|
||||
'JUMP_IF_FALSE': (1, 1, 1),
|
||||
'JUMP_IF_FALSE_OR_POP': (None, None, None),
|
||||
'JUMP_IF_TRUE': (1, 1, 1),
|
||||
'JUMP_IF_TRUE_OR_POP': (None, None, None),
|
||||
'LIST_APPEND': (2, 0, 1),
|
||||
'LOAD_ATTR': (1, 1, None),
|
||||
'LOAD_BUILD_CLASS': (None, None, None),
|
||||
'LOAD_CLOSURE': (None, None, None),
|
||||
'LOAD_CONST': (0, 1, None),
|
||||
'LOAD_DEREF': (0, 1, None),
|
||||
'LOAD_FAST': (0, 1, None),
|
||||
'LOAD_GLOBAL': (0, 1, None),
|
||||
'LOAD_LOCALS': (None, None, None),
|
||||
'LOAD_NAME': (0, 1, None),
|
||||
'MAKE_CLOSURE': (None, None, None),
|
||||
'MAKE_FUNCTION': (-2, 1, None),
|
||||
'MAP_ADD': (None, None, None),
|
||||
'NOP': (0, None, None),
|
||||
'POP_BLOCK': (0, None, 1),
|
||||
'POP_EXCEPT': (None, None, None),
|
||||
'POP_JUMP_IF_FALSE': (1, None, 1),
|
||||
'POP_JUMP_IF_TRUE': (1, None, 1),
|
||||
'POP_TOP': (1, None, 1),
|
||||
'PRINT_EXPR': (1, None, 1),
|
||||
'PRINT_ITEM': (1, None, 1),
|
||||
'PRINT_ITEM_TO': (2, None, 1),
|
||||
'PRINT_NEWLINE': (0, None, 1),
|
||||
'PRINT_NEWLINE_TO': (1, None, 1),
|
||||
'RAISE_VARARGS': (None, None, None),
|
||||
'RETURN_VALUE': (1, None, 1),
|
||||
'ROT_FOUR': (None, None, None),
|
||||
'ROT_THREE': (None, None, None),
|
||||
'ROT_TWO': (None, None, None),
|
||||
'SETUP_EXCEPT': (None, None, None),
|
||||
'SETUP_FINALLY': (None, None, None),
|
||||
'SETUP_LOOP': (None, None, None),
|
||||
'SETUP_WITH': (None, None, None),
|
||||
'SET_ADD': (None, None, None),
|
||||
'SLICE+0': (1, 1, None),
|
||||
'SLICE+1': (2, 1, None),
|
||||
'SLICE+2': (2, 1, None),
|
||||
'SLICE+3': (3, 1, None),
|
||||
'STOP_CODE': (None, None, None),
|
||||
'STORE_ATTR': (2, None, 1),
|
||||
'STORE_DEREF': (1, 0, 1),
|
||||
'STORE_FAST': (1, None, 1),
|
||||
'STORE_GLOBAL': (1, None, 1),
|
||||
'STORE_LOCALS': (None, None, None),
|
||||
'STORE_MAP': (1, None, 1),
|
||||
'STORE_NAME': (1, None, 1),
|
||||
'STORE_SLICE+0': (1, None, 1),
|
||||
'STORE_SLICE+1': (2, None, 1),
|
||||
'STORE_SLICE+2': (2, None, 1),
|
||||
'STORE_SLICE+3': (3, None, 1),
|
||||
'STORE_SUBSCR': (3, None, 1),
|
||||
'UNARY_CONVERT': (1, 1, None),
|
||||
'UNARY_INVERT': (1, 1, None),
|
||||
'UNARY_NEGATIVE': (1, 1, None),
|
||||
'UNARY_NOT': (1, 1, None),
|
||||
'UNARY_POSITIVE': (1, 1, None),
|
||||
'UNPACK_EX': (None, None, None),
|
||||
'UNPACK_SEQUENCE': (None, None, None),
|
||||
'WITH_CLEANUP': (None, None, None),
|
||||
'YIELD_VALUE': (1, None, 1),
|
||||
}
|
||||
|
||||
# ______________________________________________________________________
|
||||
# Module functions
|
||||
|
||||
def itercode(code, start = 0):
|
||||
"""Return a generator of byte-offset, opcode, and argument
|
||||
from a byte-code-string
|
||||
"""
|
||||
i = 0
|
||||
extended_arg = 0
|
||||
if isinstance(code[0], str):
|
||||
code = [ord(c) for c in code]
|
||||
n = len(code)
|
||||
while i < n:
|
||||
op = code[i]
|
||||
num = i + start
|
||||
i = i + 1
|
||||
oparg = None
|
||||
if op >= opcode.HAVE_ARGUMENT:
|
||||
oparg = code[i] + (code[i + 1] * 256) + extended_arg
|
||||
extended_arg = 0
|
||||
i = i + 2
|
||||
if op == opcode.EXTENDED_ARG:
|
||||
extended_arg = oparg * 65536
|
||||
|
||||
delta = yield num, op, oparg
|
||||
if delta is not None:
|
||||
abs_rel, dst = delta
|
||||
assert abs_rel == 'abs' or abs_rel == 'rel'
|
||||
i = dst if abs_rel == 'abs' else i + dst
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def extendlabels(code, labels = None):
|
||||
"""Extend the set of jump target labels to account for the
|
||||
passthrough targets of conditional branches.
|
||||
|
||||
This allows us to create a control flow graph where there is at
|
||||
most one branch per basic block.
|
||||
"""
|
||||
if labels is None:
|
||||
labels = []
|
||||
if isinstance(code[0], str):
|
||||
code = [ord(c) for c in code]
|
||||
n = len(code)
|
||||
i = 0
|
||||
while i < n:
|
||||
op = code[i]
|
||||
i += 1
|
||||
if op >= dis.HAVE_ARGUMENT:
|
||||
i += 2
|
||||
label = -1
|
||||
if op in hasjump:
|
||||
label = i
|
||||
if label >= 0:
|
||||
if label not in labels:
|
||||
labels.append(label)
|
||||
elif op == opcode.opmap['BREAK_LOOP']:
|
||||
if i not in labels:
|
||||
labels.append(i)
|
||||
return labels
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def get_code_object (func):
|
||||
return getattr(func, '__code__', getattr(func, 'func_code', None))
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def build_basic_blocks (co_obj):
|
||||
co_code = co_obj.co_code
|
||||
labels = extendlabels(co_code, dis.findlabels(co_code))
|
||||
labels.sort()
|
||||
blocks = dict((index, list(itercode(co_code[index:next_index], index)))
|
||||
for index, next_index in zip([0] + labels,
|
||||
labels + [len(co_code)]))
|
||||
return blocks
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of opcode_util.py
|
||||
153
llpython/phi_injector.py
Normal file
153
llpython/phi_injector.py
Normal file
|
|
@ -0,0 +1,153 @@
|
|||
# ______________________________________________________________________
|
||||
|
||||
from .bytecode_visitor import BytecodeFlowVisitor, BenignBytecodeVisitorMixin
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
synthetic_opname = []
|
||||
synthetic_opmap = {}
|
||||
|
||||
def def_synth_op (opname):
|
||||
global synthetic_opname, synthetic_opmap
|
||||
ret_val = -(len(synthetic_opname) + 1)
|
||||
synthetic_opname.insert(0, opname)
|
||||
synthetic_opmap[opname] = ret_val
|
||||
return ret_val
|
||||
|
||||
REF_ARG = def_synth_op('REF_ARG')
|
||||
BUILD_PHI = def_synth_op('BUILD_PHI')
|
||||
DEFINITION = def_synth_op('DEFINITION')
|
||||
REF_DEF = def_synth_op('REF_DEF')
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class PhiInjector (BenignBytecodeVisitorMixin, BytecodeFlowVisitor):
|
||||
'''Transformer responsible for modifying a bytecode flow, removing
|
||||
LOAD_FAST and STORE_FAST opcodes, and replacing them with a static
|
||||
single assignment (SSA) representation.
|
||||
|
||||
In order to support SSA, PhiInjector adds the following synthetic
|
||||
opcodes to transformed flows:
|
||||
|
||||
* REF_ARG: Specifically reference an incomming argument value.
|
||||
|
||||
* BUILD_PHI: Build a phi node to disambiguate between several
|
||||
possible definitions at a control flow join.
|
||||
|
||||
* DEFINITION: Unique value definition indexed by the "arg" field
|
||||
in the tuple.
|
||||
|
||||
* REF_DEF: Reference a specific value definition.'''
|
||||
|
||||
def visit_cfg (self, cfg, nargs = 0, *args, **kws):
|
||||
self.cfg = cfg
|
||||
ret_val = self.visit(cfg.blocks, nargs)
|
||||
del self.cfg
|
||||
return ret_val
|
||||
|
||||
def visit (self, flow, nargs = 0, *args, **kws):
|
||||
self.nargs = nargs
|
||||
self.definitions = []
|
||||
self.phis = []
|
||||
self.prev_blocks = []
|
||||
self.blocks_locals = dict((block, {})
|
||||
for block in self.cfg.blocks.keys())
|
||||
ret_val = super(PhiInjector, self).visit(flow, *args, **kws)
|
||||
for block, _, _, args, _ in self.phis:
|
||||
local = args.pop()
|
||||
reaching_definitions = self.cfg.reaching_definitions[block]
|
||||
for prev in reaching_definitions.keys():
|
||||
if 0 in self.cfg.blocks_reaching[prev]:
|
||||
args.append((prev, REF_DEF, 'REF_DEF',
|
||||
self.blocks_locals[prev][local], ()))
|
||||
args.sort()
|
||||
del self.blocks_locals
|
||||
del self.prev_blocks
|
||||
del self.phis
|
||||
del self.definitions
|
||||
del self.nargs
|
||||
return ret_val
|
||||
|
||||
def add_definition (self, index, local, arg):
|
||||
definition_index = len(self.definitions)
|
||||
definition = (index, DEFINITION, 'DEFINITION', definition_index,
|
||||
(arg,))
|
||||
self.definitions.append(definition)
|
||||
self.blocks_locals[self.block][local] = definition_index
|
||||
return definition
|
||||
|
||||
def add_phi (self, index, local):
|
||||
ret_val = (index, BUILD_PHI, 'BUILD_PHI', [local], ())
|
||||
self.phis.append(ret_val)
|
||||
return ret_val
|
||||
|
||||
def enter_block (self, block):
|
||||
ret_val = False
|
||||
self.block = block
|
||||
if block == 0:
|
||||
if self.nargs > 0:
|
||||
ret_val = [self.add_definition(-1, arg,
|
||||
(-1, REF_ARG, 'REF_ARG', arg,
|
||||
()))
|
||||
for arg in range(self.nargs)]
|
||||
else:
|
||||
ret_val = True
|
||||
elif 0 in self.cfg.blocks_reaching[block]:
|
||||
ret_val = True
|
||||
prev_block_locals = None
|
||||
for pred_block in self.cfg.blocks_in[block]:
|
||||
if pred_block in self.prev_blocks:
|
||||
prev_block_locals = self.blocks_locals[pred_block]
|
||||
break
|
||||
assert prev_block_locals is not None, "Internal translation error"
|
||||
self.blocks_locals[block] = prev_block_locals.copy()
|
||||
phis_needed = self.cfg.phi_needed(block)
|
||||
if phis_needed:
|
||||
ret_val = [self.add_definition(block, local,
|
||||
self.add_phi(block, local))
|
||||
for local in phis_needed]
|
||||
return ret_val
|
||||
|
||||
def exit_block (self, block):
|
||||
if 0 in self.cfg.blocks_reaching[block]:
|
||||
self.prev_blocks.append(block)
|
||||
del self.block
|
||||
|
||||
def op_STORE_FAST (self, i, op, arg, *args, **kws):
|
||||
assert len(args) == 1
|
||||
return [self.add_definition(i, arg, args[0])]
|
||||
|
||||
def op_LOAD_FAST (self, i, op, arg, *args, **kws):
|
||||
return [(i, REF_DEF, 'REF_DEF', self.blocks_locals[self.block][arg],
|
||||
args)]
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def inject_phis (func):
|
||||
'''Given a Python function, return a bytecode flow object that has
|
||||
been transformed by a fresh PhiInjector instance.'''
|
||||
import byte_control, byte_flow
|
||||
argcount = byte_control.opcode_util.get_code_object(func).co_argcount
|
||||
cfg = byte_control.build_cfg(func)
|
||||
cfg.blocks = byte_flow.BytecodeFlowBuilder().visit_cfg(cfg)
|
||||
return PhiInjector().visit_cfg(cfg, argcount)
|
||||
|
||||
# ______________________________________________________________________
|
||||
# Main (self-test) routine
|
||||
|
||||
def main (*args):
|
||||
import pprint
|
||||
from tests import llfuncs
|
||||
if not args:
|
||||
args = ('doslice',)
|
||||
for arg in args:
|
||||
pprint.pprint(inject_phis(getattr(llfuncs, arg)))
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
if __name__ == "__main__":
|
||||
import sys
|
||||
main(*sys.argv[1:])
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of phi_injector.py
|
||||
40
llpython/pyaddfunc.py
Normal file
40
llpython/pyaddfunc.py
Normal file
|
|
@ -0,0 +1,40 @@
|
|||
# ______________________________________________________________________
|
||||
|
||||
import ctypes
|
||||
|
||||
# ______________________________________________________________________
|
||||
class PyMethodDef (ctypes.Structure):
|
||||
_fields_ = [
|
||||
('ml_name', ctypes.c_char_p),
|
||||
('ml_meth', ctypes.c_void_p),
|
||||
('ml_flags', ctypes.c_int),
|
||||
('ml_doc', ctypes.c_char_p),
|
||||
]
|
||||
|
||||
PyCFunction_NewEx = ctypes.pythonapi.PyCFunction_NewEx
|
||||
PyCFunction_NewEx.argtypes = (ctypes.POINTER(PyMethodDef),
|
||||
ctypes.c_void_p,
|
||||
ctypes.c_void_p)
|
||||
PyCFunction_NewEx.restype = ctypes.py_object
|
||||
|
||||
cache = {} # Unsure if this is necessary to keep the PyMethodDef
|
||||
# structures from being garbage collected. Assuming so...
|
||||
|
||||
def pyaddfunc (func_name, func_ptr, func_doc = None):
|
||||
global cache
|
||||
if bytes != str:
|
||||
func_name = bytes(ord(ch) for ch in func_name)
|
||||
key = (func_name, func_ptr)
|
||||
if key in cache:
|
||||
_, ret_val = cache[key]
|
||||
else:
|
||||
mdef = PyMethodDef(bytes(func_name),
|
||||
func_ptr,
|
||||
1, # == METH_VARARGS (hopefully remains so...)
|
||||
func_doc)
|
||||
ret_val = PyCFunction_NewEx(ctypes.byref(mdef), 0, 0)
|
||||
cache[key] = (mdef, ret_val)
|
||||
return ret_val
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of pyaddfunc.py
|
||||
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Reference in a new issue